Transcript
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ID”~”TITLE”~”TN”~”Month”~”Year”~”Author”~”Division”~”Notes”~”HTML”~”Word”~”PDF”~”PS”~”Frame”~”LaTex”~”TeX”~”Figs”~”InfoURL”~”RefURL”~”Abs

1”~”Instrumentation and control costs”~”CEBAF-TN-85-001”~”SEP”~”1985”~”Donal Day”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

2”~”Guidelines for PSR consultant”~”CEBAF-TN-85-002”~”Sep”~”1985”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

3”~”Emittance growth, energy spread in recirculator arcs”~”CEBAF-TN-85-003”~”Oct”~”1985”~”Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

4”~”Recirculator arcs”~”CEBAF-TN-85-004”~”Oct”~”1985”~”David Douglas”~”ACC”~”Superseded by 85-010.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

5”~”Ground stability guesstimates”~”CEBAF-TN-85-005”~”Oct”~”1985”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

6”~”Isochronicity requirements for the path length variation system”~”CEBAF-TN-85-006”~”Oct”~”1985”~”Richard York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

7”~”Quantum excitation in recirculator arcs”~”CEBAF-TN-85-007”~”OCT”~”1985”~”Christoph Leemann”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

8”~”A possible reduction in isochronicity requirements”~”CEBAF-TN-85-008”~”Oct”~”1985”~”Richard York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

9”~”[Letter on shielding design]”~”CEBAF-TN-85-009”~”Oct”~”1985”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

10”~”Recirculator arcs (revised)”~”CEBAF-TN-85-010”~”Oct”~”1985”~”David Douglas”~”ACC”~”Supersedes 85-004.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

11”~”Beam diagnostics devices”~”CEBAF-TN-85-011”~”Oct”~”1985”~”Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

12”~”Summary of recirculator arc lattice design”~”CEBAF-TN-85-012”~”Oct”~”1985”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

13”~”External focusing in linac”~”CEBAF-TN-85-013”~”Oct”~”1985”~”Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

14”~”[Letter on estimate of additional cost of reducing annual boundary radiation dose from 50 mrem to 25 mrem]”~”CEBAF-TN-85-014”~”Oct”~”1985”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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15”~”Radiation and safety assessment documentation -- visit note”~”CEBAF-TN-85-015”~”Oct”~”1985”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

16”~”Review of various aspects of CEBAF superconducting recyclotron proposal”~”CEBAF-TN-85-016”~”Oct”~”1985”~”Roy E. Rand”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

17”~”Estimates of the radioactivity produced in the ground water surrounding CEBAF 6 GeV, 1/2 MW electron accelerator”~”CEBAF-TN-85-017”~”Nov”~”1985”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

18”~”Temperature effects of high-current, low-emittance beams”~”CEBAF-TN-85-018”~”Nov”~”1985”~”Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

19”~”Synchrotron radiation in the recirculator arcs”~”CEBAF-TN-85-019”~”Nov”~”1985”~”Blaine Norum”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

20”~”Comments on analysis of multi-pass BBU”~”CEBAF-TN-85-020”~”Nov”~”1985”~”A. Vetter”~”PHY”~”In 1998, an old list mentioned a revision of TN-85-020 designated 86-024 (not to be confused with 85-024). But neither the library nor AccD holds this revision. Concerning consultant A. M. Vetter, see Joe Bisognano.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

21”~”Multi energy schemes”~”CEBAF-TN-85-021”~”Nov”~”1985”~”Richard York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

22”~”Effect of breaking in seals on SC cavity performance”~”CEBAF-TN-85-022”~”Nov”~”1985”~”Padamsee, H.”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

23”~”A polarized high energy photon beam for CEBAF”~”CEBAF-TN-85-023”~”Nov”~”1985”~”Blaine Norum”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

24”~”Radiation shielding requirements for End Stations A and C”~”CEBAF-TN-85-024”~”Dec”~”1985”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

25”~”A note on beam collimators”~”CEBAF-TN-86-025”~”Mar”~”1986”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

26”~”Transverse emittance measured by synchrotron light monitor”~”CEBAF-TN-86-026”~”Jan”~”1986”~”Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

27”~”RF separator induced emittance growth”~”CEBAF-TN-86-027”~”Mar”~”1986”~”Richard York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

28”~”Emittance growth in the one GeV, CEBAF superconducting linac due to the RF couplers”~”CEBAF-TN-86-028”~”Mar”~”1986”~”Richard York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

29”~”Analysis of beam loss due to quantum fluctuations in arcs”~”CEBAF-TN-86-029”~”Feb”~”1986”~”Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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30”~”A simple production and transport model for tritium in groundwater”~”CEBAF-TN-86-030”~”Mar”~”1986”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

31”~”Comments on new RF separator extraction scheme”~”CEBAF-TN-86-031”~”Mar”~”1986”~”Richard York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

32”~”Transport of polarized electrons in the CEBAF linac”~”CEBAF-TN-86-032”~”Apr”~”1986”~”Richard York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

33”~”Stepping forward through extraction: the true confessions of an alternative extraction scheme”~”CEBAF-TN-86-033”~”Apr”~”1986”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

34”~” 'Kick' error sources and emittance dilution (rev.)”~”CEBAF-TN-86-034”~”Aug”~”1986”~”David Douglas”~”ACC”~”Revised 25 Aug. 86.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

35”~”Current spikes for use as tuning pulses during linac operation”~”CEBAF-TN-86-035”~”Jul”~”1986”~”Richard York, J. Fugitt”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

36”~”Temperature regulation of room temperature accelerating structures”~”CEBAF-TN-86-036”~”Jul”~”1986”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

37”~”Energy acceptance of spreaders and recombiners impact upon possible linac energy configurations”~”CEBAF-TN-86-037”~”Jul”~”1986”~”Richard York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

38”~”Energy spread from RF phase and amplitude errors”~”CEBAF-TN-86-038”~”Aug”~”1986”~”Geoffrey Krafft”~”ACC”~”See also 86-050.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

39”~”Beam diagnostics at CEBAF: beam current, position, and profile monitors”~”CEBAF-TN-86-039”~”Aug”~”1986”~”Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

40”~”Arc beam line lattices with simplified geometry”~”CEBAF-TN-86-040”~”Aug”~”1986”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

41”~”A fast beam position monitor using synchrotron light”~”CEBAF-TN-86-041”~”Sep”~”1986”~”Peter Kloeppel”~”ACC”~”Revised 26 Sept. 86.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

42”~”A result on phototube noise”~”CEBAF-TN-86-042”~”Sep”~”1986”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

43”~”Beam breakup simulations of the Saclay recirculating linac”~”CEBAF-TN-86-043”~”Oct”~”1986”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

44”~”Dispersion and chronicity measurements using dipole excitation offsets”~”CEBAF-TN-86-044”~”Nov”~”1986”~”David Douglas”~”ACC”~”Revised 19 Nov. 86.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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45”~”High dispersion configuration for low energy beam lines (revised)”~”CEBAF-TN-86-045”~”Nov”~”1986”~”David Douglas”~”ACC”~”Revised 19 Nov. 86.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

46”~”Performance of the room temperature vacuum system”~”CEBAF-TN-86-046”~”Nov”~”1986”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

47”~”Estimates of ion accumulation in the recirculator”~”CEBAF-TN-86-047”~”Dec”~”1986”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

48”~”Gas flux into the differential pumps”~”CEBAF-TN-86-048”~”Dec”~”1986”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

49”~”Operational considerations”~”CEBAF-TN-86-049”~”Dec”~”1986”~”Richard York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

50”~”Revised energy spread estimate”~”CEBAF-TN-86-050”~”“~”1986”~”Geoffrey Krafft, Joseph Bisognano, Roger Miller”~”“~”Published 7 May 1987; listed as both 87-050 and as 86-050.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

51”~”Workshop on radiation safety”~”CEBAF-TN-86-058”~”“~”1986”~”W. Swanson, Don Cossairt, Ken Crook, M. Hofert, T. Jenkins, C. Johnson, D. Lee, J. McCaslin, Robert P. McGee, Paul Page, L. Read, Geoffrey Stapleton, Siegfrid Tesch”~”“~”April 1986 compilation is listed as both 86-058 and 87-058.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

52”~”Revised energy spread estimate”~”CEBAF-TN-87-050”~”“~”1987”~”Geoffrey Krafft, Joseph Bisognano, Roger Miller”~”“~”Published 7 May 1987; listed as both 87-050 and as 86-050.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

53”~”Modification of PARMELA to include CEBAF cavities”~”CEBAF-TN-87-051”~”Jan”~”1987”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

54”~”Wake potentials for CEBAF linac: a modal analysis”~”CEBAF-TN-87-052”~”Jan”~”1987”~”Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

55”~”Wake potentials at short distance”~”CEBAF-TN-87-053”~”Jan”~”1987”~”Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

56”~”Single bunch collective effects for CEBAF linac”~”CEBAF-TN-87-054”~”Jan”~”1987”~”Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

57”~”A laser gun for CEBAF”~”CEBAF-TN-87-055”~”Mar”~”1987”~”R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

58”~”Wake fields effects for a Gaussian bunch in a 5-cell CEBAF accelerating cavity”~”CEBAF-TN-87-056”~”Apr”~”1987”~”Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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59”~”Air activation at CEBAF”~”CEBAF-TN-87-057”~”Nov”~”1987”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

60”~”Workshop on radiation safety”~”CEBAF-TN-87-058”~”“~”1987”~”W. Swanson, Don Cossairt, Ken Crook, M. Hofert, T. Jenkins, C. Johnson, D. Lee, J. McCaslin, Robert P. McGee, Paul Page, L. Read, Geoffrey Stapleton, Siegfrid Tesch”~”“~”April 1986 compilation is listed as both 86-058 and 87-058.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

61”~”Impedances of CEBAF superconducting accelerator”~”CEBAF-TN-87-059”~”Jun”~”1987”~”J. Bisognano, Sam Heifets, Byung Yunn”~”ACC”~”Published March 1988.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

62”~”Radiation damage considerations of superinsulation”~”CEBAF-TN-87-060”~”Jul”~”1987”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

63”~”Radiation control review (book)”~”CEBAF-TN-87-061”~”Jun”~”1987”~”R. H. Thomas et al.”~”PHY”~”14 MB file. Bound compilation may also be listed as 'Report of the CEBAF Radiation Control Review Board, April 16-18, 1987.' Library has master copy.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

64”~”The production of radionuclides in the groundwater”~”CEBAF-TN-87-062”~”“~”1987”~”G. Stapleton”~”“~”Note: Two slightly divergent versions in Accelerator Division files.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

65”~”EGS simulation of high-energy transmission through thick walls”~”CEBAF-TN-87-063”~”Aug”~”1987”~”Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

66”~”[Unused TN number]”~”CEBAF-TN-87-064”~”“~”1987”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

67”~”On running EGS”~”CEBAF-TN-87-065”~”Sep”~”1987”~”Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

68”~”Radiation damage problems in the beam enclosure”~”CEBAF-TN-87-066”~”“~”1987”~”G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

69”~”Note on the energy spread”~”CEBAF-TN-87-067”~”Oct”~”1987”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

70”~”Impedances at CEBAF”~”CEBAF-TN-87-068”~”Nov”~”1987”~”Sam Heifets, Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

71”~”Summary of radiation damage problems in beam enclosures”~”CEBAF-TN-87-069”~”Dec”~”1987”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

72”~”Thermal expansion of magnet stands and orbit errors”~”CEBAF-TN-87-070”~”Nov”~”1987”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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73”~”Cavity pair testing for CEBAF at Cornell University”~”CEBAF-TN-87-076”~”“~”1987”~”P. Kneisel, A. Heidt”~”“~”Originally published September 1987; cross-listed as both 87-076 and 88-076.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

74”~”Pressure in a stainless steel vacuum system”~”CEBAF-TN-88-071”~”Feb”~”1988”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

75”~”An example of geologically produced ground loops”~”CEBAF-TN-88-072”~”“~”1988”~”J. R. Boyce”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

76”~”Proposal for a safety and interlock system for CEBAF”~”CEBAF-TN-88-073”~”“~”1988”~”G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

77”~”Positron beam transport tunnels at CEBAF”~”CEBAF-TN-88-074”~”Mar”~”1988”~”Jim Boyce, Jorg Kewisch, R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

78”~”Asymptotic behaviour of impedances”~”CEBAF-TN-88-075”~”Feb”~”1988”~”Joseph Bisognano, Sam Heifets, Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

79”~”Cavity pair testing for CEBAF at Cornell University”~”CEBAF-TN-88-076”~”“~”1988”~”P. Kneisel, A. Heidt”~”“~”Originally published September 1987; cross-listed as both 87-076 and 88-076.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

80”~”Cavity microphonics study”~”CEBAF-TN-88-077”~”Mar”~”1988”~”Larry Doolittle”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

81”~”Superconductivity RF test on cryounit A”~”CEBAF-TN-88-078”~”Mar”~”1988”~”I. E. Campisi”~”ACC”~”Prepared by I. E. Campisi on behalf of SRF Division.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

82”~”Determination of the injection energy into the first linac from the properties of the first spreader”~”CEBAF-TN-88-079”~”May”~”1988”~”Jorg Kewisch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

83”~”A cross coupling between cavities”~”CEBAF-TN-88-080”~”May”~”1988”~”Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

84”~”Evaluation of microphonics induced transverse emittance dilution”~”CEBAF-TN-88-081”~”Jun”~”1988”~”Richard York, Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

85”~”Effect of phase errors and amplitude errors for the corporate feed RF system”~”CEBAF-TN-88-082”~”Jun”~”1988”~”Geoffrey Krafft”~”ACC”~”TN not distributed; contact author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

86”~”A numerical study of coupling between cavities”~”CEBAF-TN-88-083”~”Jun”~”1988”~”Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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87”~”A first proposal for an unconventional, high accuracy control system for the CEBAF cavities”~”CEBAF-TN-88-084”~”Jun”~”1988”~”R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

88”~”Skyshine calculations for CEBAF end stations and comparisons with measurements made at the Bates Accelerator Laboratory”~”CEBAF-TN-88-085”~”Jul”~”1988”~”Geoffrey Stapleton”~”ACC”~”Use Revision B of 18 June 1990. At the time of Revision A (27 Nov. 89), the TN was renamed 'Calculation of neutron skyshine radiation and comparison with measurements at BATES (MIT) Laboratory.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

89”~”Intercepting beam diagnostic devices at CEBAF”~”CEBAF-TN-88-086”~”Jul”~”1988”~”P. Adderley, Walter Barry, Brian Brooks, Rolf Bork, Francis Cucinotta, Caroline Grubb, Jorg Kewisch, Peter Kloeppel, T. Mason, Edwin Navarro, Randy Pico, Henry Robertson, R. Rossmanith, Joan Sage, Marty Wise”~”ACC”~”Revised 10 November 1988.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

90”~”Specification of phase and amplitude control for RF separator”~”CEBAF-TN-88-087”~”Jul”~”1988”~”Chong-Guo Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

91”~”Retesting of the Interatom cavity pair 1/3 at CEBAF”~”CEBAF-TN-88-088”~”Jul”~”1988”~”Peter Kneisel, Albert Heidt”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

92”~”An RF separator system for bunch length measurement”~”CEBAF-TN-88-089”~”Aug”~”1988”~”Richard York, Chong-Guo Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

93”~”A MAFIA study of CEBAF RF-separator design”~”CEBAF-TN-88-090”~”Aug”~”1988”~”Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

94”~”Oxygen deficiency results from a liquid nitrogen spill in the CEBAF injector test cave”~”CEBAF-TN-88-091”~”“~”1988”~”J. Patrick Kelley”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

95”~”A review and cost estimate of cryogenic instrumentation”~”CEBAF-TN-88-092”~”Aug”~”1988”~”Ganapati Rao Myneni”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

96”~”Adjusted four pass layout”~”CEBAF-TN-88-093”~”Sep”~”1988”~”Daniel Berkery”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

97”~”Comments on the beauty factory parameters”~”CEBAF-TN-88-094”~”Sep”~”1988”~”Joseph Bisognano, Sam Heifets”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

98”~”End Station Radiation Control Workshop, Sept. 26-28, 1988”~”CEBAF-TN-88-095”~”Sep”~”1988”~”Geoffrey Stapleton”~”ACC”~”4.5 MB file”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

99”~”Strongback to lift concrete blocks in the test lab”~”CEBAF-TN-88-096”~”Oct”~”1988”~”Walter Tuzel, Ralph Stegman”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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100”~”Preliminary results of tensile test on niobium at room temperature and 4.2 K”~”CEBAF-TN-88-097”~”Oct”~”1988”~”Peter Kneisel, Ganapati Rao Myneni”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

101”~”Comparison of the adverse effects of misalignments for CEBAF 4-and 5-pass lattices”~”CEBAF-TN-88-098”~”Oct”~”1988”~”Sam Heifets”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

102”~”Calibration procedure for megahertz inductive loop beam position monitors”~”CEBAF-TN-88-099”~”Oct”~”1988”~”Walter Barry”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

103”~”Ground loops at CEBAF”~”CEBAF-TN-88-100”~”Nov”~”1988”~”Jim Boyce, George Burtner, Paul Brindza”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

104”~”First measurements of the emittance at the CEBAF injector”~”CEBAF-TN-88-101”~”Nov”~”1988”~”Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

105”~”First beam position measurement and orbit correction with prototype Loop Position Monitor”~”CEBAF-TN-89-102”~”Jan”~”1989”~”W. Barry, P. Adderley, P. Kloeppel, R. Rossmanith, M. Wise”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

106”~”OLE: On-line envelope display and fast orbit correction for CEBAF, part 1: testing the program at the injector”~”CEBAF-TN-89-103”~”Jan”~”1989”~”Caroline Grubb, P. K. Kloeppel, R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

107”~”Radiological control of the Continuous Electron Beam Accelerator Facility”~”CEBAF-TN-89-104”~”Feb”~”1989”~”G. Stapleton, R. Thomas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

108”~”Minimum and maximum number of beam position monitors for CEBAF”~”CEBAF-TN-89-105”~”Feb”~”1989”~”Bruce Bowling”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

109”~”Experimental comparison of emittance measurement techniques”~”CEBAF-TN-89-106”~”Apr”~”1989”~”P. Adderley, William Diamond, Peter Kloeppel”~”ACC”~”No electronic or paper copy available.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

110”~”Beam current modulation effects on energy spread”~”CEBAF-TN-89-107”~”Apr”~”1989”~”Walter Barry”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

111”~”Klystron power curves without circulators”~”CEBAF-TN-89-108”~”Mar”~”1989”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

112”~”On the independence of the longitudinal wakefield on direction of transit through a cavity”~”CEBAF-TN-89-109”~”Apr”~”1989”~”Joseph Bisognano”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

113”~”Orbit correction in the CEBAF accelerating sections”~”CEBAF-TN-89-110”~”Apr”~”1989”~”Bruce Bowling, Jorg Kewisch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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114”~”Residual dispersion in arc transport system”~”CEBAF-TN-89-111”~”May”~”1989”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

115”~”Establishing quadrupole locations using the beam”~”CEBAF-TN-89-112”~”May”~”1989”~”David Douglas”~”ACC”~”Includes addendum of 26 May 1989.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

116”~”CEBAF tech notes: a vehicle for project communication”~”CEBAF-TN-89-113”~”MAY”~”1989”~”Beverly Hartline, Christoph Leemann”~”PRJ”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

117”~”RF system Q without circulators”~”CEBAF-TN-89-114”~”May”~”1989”~”Geoffrey Krafft, Joseph Bisognano”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

118”~”Two-corrector, two-bump orbit correction scheme”~”CEBAF-TN-89-115”~”May”~”1989”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

119”~”A specification on RF amplitude and phase control for the injector”~”CEBAF-TN-89-116”~”May”~”1989”~”Chong-Guo Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

120”~”Evaluation of fire prevention systems at CEBAF”~”CEBAF-TN-89-117”~”Jun”~”1989”~”Jim Boyce”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

121”~”The cryomodule containment vessel's design criteria”~”CEBAF-TN-89-118”~”Jun”~”1989”~”J. Patrick Kelley”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

122”~”TE0-modes with URMEL”~”CEBAF-TN-89-119”~”Jun”~”1989”~”B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

123”~”Understanding 5-cell mode structures”~”CEBAF-TN-89-120”~”Jun”~”1989”~”Larry Doolittle”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

124”~”Klystron RF current and klystron gap voltage with and without circulators”~”CEBAF-TN-89-121”~”Jun”~”1989”~”G. A. Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

125”~”RF control penalty by omitting circulators”~”CEBAF-TN-89-122”~”Jun”~”1989”~”G. A. Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

126”~”VSWR vs. attenuation at low accelerator current”~”CEBAF-TN-89-123”~”Jun”~”1989”~”G. A. Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

127”~”Test 305: cryostat thermal performance (see note)”~”CEBAF-TN-89-124”~”Jun”~”1989”~”B. Schneider, T. Mann”~”ACC”~”Listed titles vary for this TN, which in any case characterizes itself on its cover form this way: 'Summarizes heat load and thermal performance of A 1/2' cryounit.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

128”~”Test 402: cryostat thermal performance (see note)”~”CEBAF-TN-89-125”~”Jun”~”1989”~”B. Schneider, T. Mann”~”ACC”~”Listed titles vary for this TN, which in any case characterizes itself on its

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cover form this way: 'Summarizes heat load and thermal performance of A' cryounit.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

129”~”Drift chamber considerations -- construction and operation”~”CEBAF-TN-89-126”~”Jun”~”1989”~”Steve Christo, Mac Mestayer, Dave Doughty”~”PHY”~”Cover note says: 'Notes taken during a visit by Ricardo De Salvo regarding drift chambers.' Without explanation, attached to the TN are three CLAS notes: 91-009, 90-010, and 89-014. The latter TN attachment appears to be identical to the TN itself.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

130”~”Report on wire chamber aging”~”CEBAF-TN-89-127”~”Jun”~”1989”~”Steve Christo”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

131”~”Report on the SciFi 88 Conference”~”CEBAF-TN-89-128”~”Jun”~”1989”~”Steve Christo”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

132”~”Effect of quadrupole component in 'C' correction dipole”~”CEBAF-TN-89-129”~”Jun”~”1989”~”D. Douglas, L. Harwood”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

133”~”Alignment tolerance for arc correction dipole”~”CEBAF-TN-89-130”~”Jun”~”1989”~”D. R. Douglas, R. C. York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

134”~”A method to measure phase distribution of charge in bunch (or bunch length)”~”CEBAF-TN-89-131”~”Jun”~”1989”~”C. G. Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

135”~”Transfer matrix simulating motion through a linac cavity”~”CEBAF-TN-89-132”~”Jun”~”1989”~”D. Douglas, R. C. York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

136”~”The problem of using superconducting wire LHe level sensor in temperature range 1.5-5 K”~”CEBAF-TN-89-133”~”Jun”~”1989”~”Ganapati Rao Myneni”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

137”~”A note on tapering a step”~”CEBAF-TN-89-134”~”Jun”~”1989”~”B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

138”~”Transfer matrix for cryomodule”~”CEBAF-TN-89-135”~”Jun”~”1989”~”B. Bowling, D. Douglas, J. Kewisch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

139”~”Requirements for an independent CTF cryomodule cooldown/warmup station”~”CEBAF-TN-89-136”~”Jun”~”1989”~”C. H. Rode”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

140”~”C<sub>v</sub> required to pump vertical dewars from 4.4 K to 2.0 K”~”CEBAF-TN-89-137”~”Jun”~”1989”~”C. H. Rode”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

141”~”Radiation source terms for the end stations”~”CEBAF-TN-89-138”~”Jul”~”1989”~”G. Stapleton”~”ACC”~”Revision B is dated August 89 -- Revision A is dated 17 Sept. 90. Original TN was

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dated 14 Dec. 89. Both Revision A and B are in this file. Revision A is 1st 47 pages.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

142”~”The calibration of the cavities' field probe”~”CEBAF-TN-89-139”~”Jul”~”1989”~”Isidoro E. Campisi”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

143”~”TRANSPORT analysis of 50-MeV spectrometer design”~”CEBAF-TN-89-140”~”Jul”~”1989”~”P. K. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

144”~”Preliminary alignment of powering tolerances for arc beam transport system”~”CEBAF-TN-89-141”~”Jul”~”1989”~”David R. Douglas, Johnny Y. Tang, Richard C. York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

145”~”Test Lab radiation shielding considerations”~”CEBAF-TN-89-142”~”Jul”~”1989”~”C. Reece”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

146”~”The second-order beam-loading effect”~”CEBAF-TN-89-143”~”Jul”~”1989”~”C. G. Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

147”~”Normal mode analysis of the CEBAF accelerator cavity”~”CEBAF-TN-89-144”~”Jul”~”1989”~”Mark Wiseman”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

148”~”Finite element analysis of the CEBAF superconducting cavities”~”CEBAF-TN-89-145”~”Jul”~”1989”~”Mark Wiseman, Leigh Harwood”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

149”~”Analysis of SPEAR ring magnet data”~”CEBAF-TN-89-146”~”Jul”~”1989”~”Leigh Harwood”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

150”~”Requirements for HOM loads and filters”~”CEBAF-TN-89-147”~”Jul”~”1989”~”Joseph J. Bisognano”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

151”~”Summary of alignment and powering tolerances for arc beam transport system”~”CEBAF-TN-89-148”~”Jul”~”1989”~”D. Douglas, R. C. York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

152”~”Chemical treatment procedure for cavity pairs used in the upgraded cryomodule test”~”CEBAF-TN-89-149”~”Jul”~”1989”~”K. Finger, V. Nguyen, W. D. Riel”~”ACC”~”Also known as CEBAF-SRF-89-07-01-EX.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

153”~”Cryounit A' RF tests”~”CEBAF-TN-89-150”~”Jul”~”1989”~”Isidoro E. Campisi”~”ACC”~”Also known as CEBAF-SRF-89-07-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

154”~”Radiation levels outside truck entrance tunnels and personnel access labyrinths for the end stations”~”CEBAF-TN-89-151”~”Jul”~”1989”~”G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

155”~”Cold iron superconducting quad design”~”CEBAF-TN-89-152”~”Jul”~”1989”~”Paul Brindza”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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156”~”Energy spread from fluctuations in the beam load”~”CEBAF-TN-89-153”~”Aug”~”1989”~”Geoffrey Krafft, Sharon Laubach”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

157”~”Application of a relational database in the control system”~”CEBAF-TN-89-154”~”Aug”~”1989”~”Andrea Barry, Jorg Kewisch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

158”~”Design of shielding to ensure maximum concentrations of H-3 and Na-22 in groundwater remain within standards (rev. A)”~”CEBAF-TN-89-155”~”Aug”~”1989”~”G. Stapleton”~”ACC”~”Use rev. A of 7 Aug. 89.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

159”~”Roof shielding (skyshine) designs for end-stations”~”CEBAF-TN-89-156”~”Aug”~”1989”~”G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

160”~”Air activation in end-stations”~”CEBAF-TN-89-157”~”Aug”~”1989”~”G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

161”~”Activation of helium used for beam isolation in the beam dump channel (revised)”~”CEBAF-TN-89-158”~”Aug”~”1989”~”G. Stapleton”~”ACC”~”Use rev. A of 13 Feb. 90. Original TN is dated Aug. 89. Not clear if rev. A is a replacement or an addendum, so both are kept in AccD files.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

162”~”Air activation in the beam dump cave”~”CEBAF-TN-89-159”~”Aug”~”1989”~”G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

163”~”Star density contours and attenuation length in concrete surrounding the CEBAF beam dumps”~”CEBAF-TN-89-160”~”Aug”~”1989”~”San Jin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

164”~”Safety instructions for the operation of the facility to test CEBAF cryomodules (revision A)”~”CEBAF-TN-89-161”~”Aug”~”1989”~”R. Sundelin, G. Stapleton, T. Hassler, K. Clark, T. Mann”~”ACC”~”Use version of 8 Sept. 89 marked 'Revision A.' (TN's original date: 14 Aug. 89.) TN is also known as CEBAF-SRF-89-08-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

165”~”Radiolysis and radioactivation of beam dump cooling water”~”CEBAF-TN-89-162”~”Aug”~”1989”~”G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

166”~”Tuners, microphonics, and control systems in superconducting accelerating structures”~”CEBAF-TN-89-163”~”Aug”~”1989”~”Lawrence R. Doolittle”~”ACC”~”Also known as CEBAF-SRF-89-02-EXA. (That designation not in usual form for SRF numbers, but quoted verbatim.)”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

167”~”Transition radiation beam diagnostics”~”CEBAF-TN-89-164”~”Aug”~”1989”~”S. Y. R. Liu”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

168”~”RF-superconductivity -- present status and future developments”~”CEBAF-TN-89-165”~”Sep”~”1989”~”Peter Kneisel”~”ACC”~”Also known as CEBAF-SRF-89-09-01-EX.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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169”~”OLE: fast on-line display of the CEBAF beam envelope”~”CEBAF-TN-89-166”~”Sep”~”1989”~”Andrea Barry, Bruce Bowling, Caroline Grubb, Jorg Kewisch, Peter Kloeppel, Chandler McDowell, Robert Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

170”~”Automatic generation of the LOGIC description for the transport systems”~”CEBAF-TN-89-167”~”Sep”~”1989”~”Andrea Barry, Bruce Bowling, Jorg Kewisch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

171”~”Simulation of quadrupole mispowering using OLE”~”CEBAF-TN-89-168”~”Sep”~”1989”~”B. Bowling, D. Douglas, J. Kewisch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

172”~”Boundary dose contributions from beam dumps and cooling water plant”~”CEBAF-TN-89-169”~”Sep”~”1989”~”G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

173”~”The CEBAF machine coordinate system (revised version)”~”CEBAF-TN-89-170”~”Sep”~”1989”~”J. R. Boyce, A. Barry, A. Jewell”~”ACC”~”Includes revision A of 13 Feb. 90 which supersedes original TN dated 18 Sept. 89.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

174”~”Concepts for a 10 MHz current intensity modulator”~”CEBAF-TN-89-171”~”Sep”~”1989”~”W. Barry, P. Kloeppel, R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

175”~”Configuration of the switchyard and beamlines for ensuring safety of beams”~”CEBAF-TN-89-172”~”Sep”~”1989”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

176”~”Prospectives of a linac based beauty factory”~”CEBAF-TN-89-173”~”Sep”~”1989”~”S. A. Heifets, C. McDowell, M. Fripp”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

177”~”Radiological aspects of the conceptual design for the CEBAF end stations -- revisions and additions to the information presented at the August 1989 review”~”CEBAF-TN-89-174”~”Sep”~”1989”~”G. Stapleton”~”ACC”~”13 MB File - includes addendum”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

178”~”The effects of inhomogeneities in arc transport system quadrupoles”~”CEBAF-TN-89-175”~”Sep”~”1989”~”D. Douglas, J. Y. Tang, R. C. York”~”ACC”~”Includes one-page 'Correction to TN-0175' published 30 Nov. 89.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

179”~”Undulator beam energy monitor”~”CEBAF-TN-89-176”~”Oct”~”1989”~”R. Roy Whitney”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

180”~”An alternative method of path length variation in CEBAF”~”CEBAF-TN-89-177”~”Oct”~”1989”~”J. R. Boyce, Jorg Kewisch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

181”~”Evaluation of proposed alternative method of path length variation for CEBAF”~”CEBAF-TN-89-178”~”Oct”~”1989”~”G. H. Biallas, D. R. Douglas, L. H. Harwood, R. C. York”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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182”~”A method of modulating the beam current at 10 MHz”~”CEBAF-TN-89-179”~”Oct”~”1989”~”C. G. Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

183”~”Fundamental and sideband power needed to drive an amplitude modulated cavity”~”CEBAF-TN-89-180”~”Nov”~”1989”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

184”~”Another method of modulating three beams separately”~”CEBAF-TN-89-181”~”Nov”~”1989”~”Chong-Guo Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

185”~”The measured data of RF components in CEBAF injector”~”CEBAF-TN-89-182”~”Nov”~”1989”~”C. G. Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

186”~”Effects of field asymmetry in the coupler”~”CEBAF-TN-89-183”~”Nov”~”1989”~”C. G. Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

187”~”New liquid helium level sensor”~”CEBAF-TN-89-184”~”Nov”~”1989”~”Ganapati Rao”~”ACC”~”Also known as CEBAF-SRF-89-11-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

188”~”Outgassing of Kalrez 174, Viton 174, O-rings, and Solvents”~”CEBAF-TN-90-185”~”“~”1990”~”Ganapati Rao”~”ACC”~”Also known as CEBAF-SRF-89-11-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

189”~”Effect of the ion trapping at CEBAF”~”CEBAF-TN-89-186”~”Nov”~”1989”~”S. Heifets”~”ACC”~”Copies in both AccD and library files are marked 'draft.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

190”~”Production magnet testing”~”CEBAF-TN-89-187”~”Nov”~”1989”~”Leigh Harwood”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

191”~”An overview of the accelerator Personnel Safety System”~”CEBAF-TN-89-188”~”Nov”~”1989”~”J. Heefner, H. Robertson, R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

192”~”Impedance policy at CEBAF”~”CEBAF-TN-90-189”~”Nov”~”1990”~”J. J. Bisognano, S. A. Heifets, B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

193”~”Comparison of the Design Handbook manifold and a proposed manifold for waveguide vacuum”~”CEBAF-TN-90-190”~”Dec”~”1990”~”Joe Van Dyke”~”ACC”~”Also known as CEBAF-SRF-89-12-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

194”~”Emittance measurement with one or three profile monitors: a comparison”~”CEBAF-TN-89-191”~”Dec”~”1989”~”P. K. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

195”~”On asymmetric collisions with large disruption parameters”~”CEBAF-TN-89-192”~”Dec”~”1989”~”S. A. Heifets, G. A. Krafft, M. Fripp”~”ACC”~”Dated September 1989. Also CEBAF-PR-90-03, published in NIMA, 293 (3), 286-290, 1990”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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196”~”Description and interfacing guide for the CEBAF fast shutdown system, rev. A”~”CEBAF-TN-90-193”~”Dec”~”1990”~”John Perry”~”ACC”~”Revision A is dated 17 Sept. 90. Original TN was dated 14 Dec. 89.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

197”~”Cryomodule test: RF performance and HOM loads”~”CEBAF-TN-90-194”~”Jan”~”1990”~”Isidoro E. Campisi, William J. Schneider”~”ACC”~”Also known as CEBAF-SRF-90-01-EXA (a number diverging from the usual SRF pattern, but copied verbatim from the TN's cover form).”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

198”~”Superconducting cavity pairs for CEBAF's 5 MeV injector and upgraded cryomodule”~”CEBAF-TN-90-195”~”Jan”~”1990”~”Viet Nguyen-tuong, Keith Finger”~”ACC”~”Also known as CEBAF-SRF-89-12-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

199”~”Top assembly drawings system for the accelerator”~”CEBAF-TN-90-196”~”Jan”~”1990”~”Warner Heilbrunn, Al Jewell”~”ACC”~”Use attached 'song sheet' revision B of February 1991 (cover form dated 20 Mar. 91), superseding original 'song sheet' TN of 4 Jan. 90.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

200”~”Second order achromatic high dispersion configuration for low energy beam lines”~”CEBAF-TN-90-197”~”Jan”~”1990”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

201”~”Calculation of photon skyshine from an anisotropic source”~”CEBAF-TN-90-198”~”Jan”~”1990”~”San Jin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

202”~”[Unused TN number]”~”CEBAF-TN-90-199”~”Jan”~”1990”~”[Unused TN number]”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

203”~”CLAS conductor design and stability, stress, cryogen requirement and safety analysis”~”CEBAF-TN-90-200”~”Jan”~”1990”~”Walter Tuzel”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

204”~”Cryogenic dissipation minimization by gradient optimization”~”CEBAF-TN-90-201”~”Jan”~”1990”~”R. Sundelin”~”ACC”~”Also known as CEBAF-SRF-90-01-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

205”~”Photon beam at CEBAF”~”CEBAF-TN-90-202”~”Jan”~”1990”~”Sam Heifets”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

206”~”Measuring the phase spread of the CEBAF beam by backphasing accelerator cavities”~”CEBAF-TN-90-203”~”Jan”~”1990”~”Peter K. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

207”~”Beam dump plate temperature”~”CEBAF-TN-90-204”~”Jan”~”1990”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

208”~”Design for 25-kW beam dumps at 100 MeV and 500 MeV”~”CEBAF-TN-90-205”~”Feb”~”1990”~”P. K. Kloeppel”~”ACC”~”Includes erratum of 2/1/90”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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209”~”Determination of the high-frequency behavior of the impedance from low-frequency data”~”CEBAF-TN-90-206”~”Feb”~”1990”~”S. A. Heifets”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

210”~”Jan. 90 CTF status”~”CEBAF-TN-90-207”~”Feb”~”1990”~”C. H. Rode”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

211”~”Operation and regulation of 2.0 K circuit”~”CEBAF-TN-90-208”~”Feb”~”1990”~”D. Arenius, W. C. Chronis J. Fugitt, C. H. Rode”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

212”~”Bug in the VAX PARMELA from Illinois”~”CEBAF-TN-90-209”~”Feb”~”1990”~”Geoffrey Krafft, Philippe Liger”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

213”~”A beam breakup study of NIST race-track microtron”~”CEBAF-TN-90-210”~”Feb”~”1990”~”B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

214”~”Beam breakup in recirculating linacs”~”CEBAF-TN-90-211”~”Feb”~”1990”~”B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

215”~”Front End Test (FET) drawing detail”~”CEBAF-TN-90-212”~”Mar”~”1990”~”L. A. Dillon-Townes, Dale Jamison”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

216”~”Radiation levels at ARC/IR detector electronics located in the accelerator tunnel”~”CEBAF-TN-90-213”~”Mar”~”1990”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

217”~”A MAFIA study of the CEBAF chopper cavity”~”CEBAF-TN-90-214”~”Mar”~”1990”~”C. G. Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

218”~”Cold iron superconducting quad design”~”CEBAF-TN-90-215”~”Mar”~”1990”~”Paul Brindza”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

219”~”Beam breakup thresholds for a recirculation experiment”~”CEBAF-TN-90-216”~”Mar”~”1990”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

220”~”A highly effective deflecting structure”~”CEBAF-TN-90-217”~”Mar”~”1990”~”C. Leemann, C. G. Yao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

221”~”Another 10 MHz beam modulation scheme”~”CEBAF-TN-90-218”~”Mar”~”1990”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

222”~”User access tools for the accelerator database”~”CEBAF-TN-90-219”~”Mar”~”1990”~”A. M. Barry”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

223”~”Preliminary position assignments for beam profile monitors”~”CEBAF-TN-90-220”~”Mar”~”1990”~”David Douglas, Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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224”~”Notes on a simple cylindrical argon filled ion chamber for beam loss protection”~”CEBAF-TN-90-221”~”Mar”~”1990”~”Geoffrey Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

225”~”Installation management at CEBAF”~”CEBAF-TN-90-222”~”MAR”~”1990”~”B. K. Hartline, C. W. Leemann, T. L. Mann”~”PRJ”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

226”~”Precise beam diagnostic and control systems for high energy accelerators and colliders”~”CEBAF-TN-90-223”~”Mar”~”1990”~”Ivan Karabekov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

227”~”Measurements of the absolute value of the beam energy and its deviation at CEBAF”~”CEBAF-TN-90-224”~”Mar”~”1990”~”Ivan Karabekov, R. Rossmanith”~”ACC”~”See also TN-90-252.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

228”~”On the dump design”~”CEBAF-TN-90-225”~”“~”1990”~”S. A. Heifets, P. Kloeppel”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

229”~”Concentration of diffusing radioemitters in a sphere”~”CEBAF-TN-90-226”~”Apr”~”1990”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

230”~”Remarks on the number of beam position monitors required for successful machine operation”~”CEBAF-TN-90-227”~”Apr”~”1990”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

231”~”CEBAF personnel access and safety system -- intercom system”~”CEBAF-TN-90-228”~”Apr”~”1990”~”H. Robertson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

232”~”CEBAF personnel access and safety system -- access control system”~”CEBAF-TN-90-229”~”Apr”~”1990”~”H. Robertson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

233”~”Estimates of radiation dose due to releases of radionuclides in air exhausted from CEBAF accelerator vaults using AIRDOS-EPA code”~”CEBAF-TN-90-230”~”Apr”~”1990”~”San Jin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

234”~”A proposal for accelerator physics experiments using a beam recirculated through the Front End Test accelerator at CEBAF”~”CEBAF-TN-90-231”~”Apr”~”1990”~”W. Barry, J. J. Bisognano, L. S. Cardman, J. Kewisch, G. A. Krafft, N. S. Sereno, C. K. Sinclair”~”ACC”~”Spokesmen: Cardman and Sinclair”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

235”~”More details on required damping by higher order mode loads”~”CEBAF-TN-90-232”~”Jun”~”1990”~”R. Sundelin”~”ACC”~”Also known as CEBAF-SRF-90-06-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

236”~”Workshop on personnel safety interlocks”~”CEBAF-TN-90-233”~”Apr”~”1990”~”Geoffrey Stapleton”~”ACC”~”Bound compilation from 29-30 March 1990 workshop chaired by R. H. Thomas of LBL.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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237”~”Power requirements for the chopper cavities”~”CEBAF-TN-90-234”~”May”~”1990”~”Geoffrey Krafft, Kelly Mahoney, Chong-Guo Yao, Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

238”~”On the microwave Compton back-scattering”~”CEBAF-TN-90-235”~”May”~”1990”~”S. A. Heifets”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

239”~”Amplitude errors in the RF control system”~”CEBAF-TN-90-236”~”May”~”1990”~”Curt Hovater, Rich Abbott, S. Simrock”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

240”~”On the design of the high-energy dump”~”CEBAF-TN-90-237”~”May”~”1990”~”S. A. Heifets, P. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

241”~”How to run FLUKA at CEBAF”~”CEBAF-TN-90-238”~”May”~”1990”~”San Jin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

242”~”Estimation of radioactivity induced in water used for cooling the FET beam dump”~”CEBAF-TN-90-239”~”May”~”1990”~”Geoffrey B. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

243”~”Fluctuations in the results of finite time averages for signals of arbitrary spectrum”~”CEBAF-TN-90-240”~”May”~”1990”~”Geoffrey Krafft, Joseph Bisognano”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

244”~”FORTRAN binary data file conversions for various CEBAF computers”~”CEBAF-TN-90-241”~”May”~”1990”~”A. Nguyen, B. A. Bowling, J. Kewisch”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

245”~”RF testing of the CEBAF prototype warm window assembly”~”CEBAF-TN-90-242”~”May”~”1990”~”J. P. Kelley, M. Augustine, J. Heckman, C. Humphry, G. Marble, J. Takacs, R. L. Terrell”~”ACC”~”Also known as CEBAF SRF-90-05-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

246”~”Notes on the beam-beam effects in a linac based beauty factory”~”CEBAF-TN-90-243”~”May”~”1990”~”A. L. Gerasimov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

247”~”Impedance of a taper”~”CEBAF-TN-90-244”~”Jun”~”1990”~”S. A. Heifets”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

248”~”Electric/pneumatic valve driver module model Z0002”~”CEBAF-TN-90-245”~”Jun”~”1990”~”John Perry”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

249”~”Beam position measurement in the CEBAF recirculating linacs by use of pseudorandom pulse sequences”~”CEBAF-TN-90-246”~”Jun”~”1990”~”W. C. Barry, J. W. Heefner, G. S. Jones, J. E. Perry, R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

250”~”Evaluation of the VAT mono-valve for cavity pairs”~”CEBAF-TN-90-247”~”Jun”~”1990”~”P. Kneisel, K. Saito, G. Rao”~”ACC”~”Also known as CEBAF-SRF-90-07-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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251”~”Engineering analysis of the reference design for Hall A dipole”~”CEBAF-TN-90-248”~”Jul”~”1990”~”Walter Tuzel, John Alcorn”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

252”~”Quench back problem of the intrinsic stable coil for CLAS magnet”~”CEBAF-TN-90-249”~”Jul”~”1990”~”W. Tuzel”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

253”~”Vertical test results of CEBAF's first production cavity pair”~”CEBAF-TN-90-250”~”Jul”~”1990”~”I. Daniels, S. Downey, E. Hanson, A. Heidt, T. Howell, M. Iacobucci, P. Kneisel, B. Lewis, J. Mammosser, G. Rao, J. Pauley, K. Saito, L. Turlington, B. Umphlett”~”ACC”~”Also known as CEBAF-SRF-90-07-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

254”~”REFBASE1 documentation”~”CEBAF-TN-90-251”~”Aug”~”1990”~”N. Dobeck”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

255”~”Specification of the synchrotron light system proposed for absolute monitoring of the CEBAF beam mean energy”~”CEBAF-TN-90-252”~”Aug”~”1990”~”I. Karabekov, P. Kloeppel, R. Rossmanith”~”ACC”~”Further specification of the system proposed in TN-90-224.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

256”~”CEBAF Personnel Safety System PLC failure modes and effects analysis”~”CEBAF-TN-90-253”~”Aug”~”1990”~”J. Heefner”~”ACC”~”Report prepared by a contractor.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

257”~”Proposal for the initial rough phasing of the linacs”~”CEBAF-TN-90-254”~”Aug”~”1990”~”Geoffrey Krafft, Stefan Simrock”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

258”~”Physics requirements on the determination and stability of the parameters of the beam”~”CEBAF-TN-90-255”~”Aug”~”1990”~”P. E. Ulmer, W. Bertozzi, J. M. Finn, R. W. Lourie, J. Mougey, A. Saha”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

259”~”Accelerator fire protection system”~”CEBAF-TN-90-256”~”Aug”~”1990”~”Tom Hassler, Mike Willard, Barry Moss, George Stevenson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

260”~”Architecture of the WBS 4 serial link magnet controller system”~”CEBAF-TN-90-257”~”Aug”~”1990”~”J. Perry, N. Dobeck”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

261”~”Injector low energy beamline design, rev. A”~”CEBAF-TN-90-258”~”Aug”~”1990”~”C. K. Sinclair”~”ACC”~”Original TN of 28 Aug. 90 was superseded by Revision A of 2 Jan. 1991.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

262”~”A 45 MeV spectrometer for the Front End Test”~”CEBAF-TN-90-259”~”Sep”~”1990”~”D. R. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

263”~”[See note.]”~”CEBAF-TN-90-260”~”Sep”~”1990”~”[See note.]”~”ACC”~”Not in library or AccD files. Listings show two titles: 'The use of argon filled coaxial RF cable for beam loss ion chambers at

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CEBAF' (Stapleton & Dotson) and 'Description and interfacing guide for the fast shutdown system' (Perry). See 90-221 & 89-194.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

264”~”Transmission of the CEBAF injector apertures”~”CEBAF-TN-90-261”~”Sep”~”1990”~”George Neil”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

265”~”SWARM: a relativistic bunch-bunch collision code”~”CEBAF-TN-90-262”~”Oct”~”1990”~”J. R. Boyce, S. Heifets, G. A. Krafft, B. Bowling”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

266”~”Parameter lists for an FEL at CEBAF”~”CEBAF-TN-90-263”~”Oct”~”1990”~”Geoffrey Krafft, Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

267”~”Coupler deflection measurements”~”CEBAF-TN-90-264”~”Oct”~”1990”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

268”~”An observation point for measurement of the 45 MeV emittance in the Front End Test”~”CEBAF-TN-90-265”~”Oct”~”1990”~”D. R. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

269”~”The CBF positron source -- possibilities”~”CEBAF-TN-90-266”~”Oct”~”1990”~”J. R. Boyce, J. Kewisch, R. Rossmanith, R. Whitney”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

270”~”On the FEL gain -- a TDA study”~”CEBAF-TN-90-267”~”Oct”~”1990”~”Geoffrey Krafft, Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

271”~”Drift and quad magnet vacuum tube O.D.'s throughout machine”~”CEBAF-TN-90-268”~”Oct”~”1990”~”Jim Parkinson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

272”~”Notes on the energy spread”~”CEBAF-TN-90-269”~”Oct”~”1990”~”Geoffrey Krafft”~”ACC”~”Includes one-page addendum that is marked 'Rev. A.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

273”~”CHL ODH protection system”~”CEBAF-TN-90-270”~”Oct”~”1990”~”Joe D. Wilson, Jr.”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

274”~”[Unused TN number]”~”CEBAF-TN-90-271”~”Nov”~”1990”~”[Unused TN number]”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

275”~”On multiple verniers”~”CEBAF-TN-90-272”~”Nov”~”1990”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

276”~”Evaluation of the VAT mono-valve for cavity pairs, part 2”~”CEBAF-TN-90-273”~”Nov”~”1990”~”P. Kneisel, K. Saito, G. Rao”~”ACC”~”Also known as CEBAF-SRF-90-11-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

277”~”On the influence of cooldown conditions on the cavity performance”~”CEBAF-TN-90-274”~”Nov”~”1990”~”K. Saito, P. Kneisel”~”ACC”~”Also known as CEBAF-SRF-90-11-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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278”~”Beam energy, polarization and current determination using a high resolution chicane in Hall A”~”CEBAF-TN-90-275”~”Nov”~”1990”~”J. M. Finn, P. Markowitz, J. LeRose, J. Mougey, P. E. Ulmer”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

279”~”On matching of highly disrupted beams”~”CEBAF-TN-90-276”~”Nov”~”1990”~”B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

280”~”Possible storage rings for CEBAF high luminosity, high disruption test facility”~”CEBAF-TN-90-277”~”Nov”~”1990”~”S. Jin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

281”~”Optical specifications for corrector dipoles”~”CEBAF-TN-90-278”~”Nov”~”1990”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

282”~”Field limitations in vertical test of the KEK 5-cell cavities”~”CEBAF-TN-90-279”~”Nov”~”1990”~”Kenji Saito”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

283”~”Proposal for the energy vernier”~”CEBAF-TN-90-280”~”Nov”~”1990”~”Geoffrey Krafft, Stefan Simrock”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

284”~”Inexpensive fast (2.5 microseconds) x-ray detection”~”CEBAF-TN-90-281”~”Nov”~”1990”~”J. Peterson, J. Perry”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

285”~”Accelerator physics experiments using a beam recirculated through the injection accelerator at CEBAF”~”CEBAF-TN-90-282”~”Dec”~”1990”~”Nicholas S. Sereno”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

286”~”Electroweak parity violation measurements using the CEBAF HRS spectrometer pair”~”CEBAF-TN-90-283”~”Dec”~”1990”~”J. M. Finn, P. Markowitz, P. M. Rutt”~”PHY”~”Appended to author list: 'The College of William and Mary in Virginia'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

287”~”Do anodic oxide layers on niobium prevent Q degradations caused by cooldown conditions?”~”CEBAF-TN-90-284”~”Dec”~”1990”~”K. Saito, P. Kneisel”~”ACC”~”Also known as CEBAF SRF-90-12-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

288”~”Q disease and CEBAF superconducting cavities”~”CEBAF-TN-90-285”~”Dec”~”1990”~”Viet Nguyen-tuong”~”ACC”~”Also known as CEBAF-SRF-90-12-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

289”~”An achromatic transverse translation with variable M56”~”CEBAF-TN-90-286”~”Dec”~”1990”~”D. R. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

290”~”First order focussing and steering of misaligned cavities”~”CEBAF-TN-90-287”~”Dec”~”1990”~”Geoffrey Krafft, Jonathan Jackson, David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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291”~”CEBAF's production chem room: installation and operation”~”CEBAF-TN-90-288”~”Dec”~”1990”~”A. Heidt, P. Kneisel, D. Lloyd, J. Pauley”~”ACC”~”Also known as CEBAF SRF-90-12-03-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

292”~”Preliminary designs of final focus system for CEBAF high luminosity, high disruption test facility (equal energy case)”~”CEBAF-TN-90-289”~”Dec”~”1990”~”S. Jin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

293”~”[Unused TN number.]”~”CEBAF-TN-91-001”~”Jan”~”1991”~”[Unused TN number]”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

294”~”Accelerator related water cooling requirements”~”CEBAF-TN-91-002”~”Jan”~”1991”~”Biallas, George”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

295”~”Bunch-bunch offset calculations”~”CEBAF-TN-91-003”~”Jan”~”1991”~”J. R. Boyce”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

296”~”The injector STAR distribution system”~”CEBAF-TN-91-004”~”Jan”~”1991”~”C. Hovater, K. Crawford, R. Abbott”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

297”~”Commissioning of the CEBAF accelerating sections”~”CEBAF-TN-91-005”~”Jan”~”1991”~”Jorg Kewisch, Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

298”~”Fundamental mode fluctuations and FEL transparency”~”CEBAF-TN-91-006”~”Feb”~”1991”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

299”~”January 1991 CTF-VTA interaction test”~”CEBAF-TN-91-007”~”Feb”~”1991”~”D. Ahlman, B. Almeida, J. Preble, C. H. Rode, B. Schneider”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

300”~”A preliminary design of final focus system for CEBAF high luminosity, high disruption test facility (unequal energy case)”~”CEBAF-TN-91-008”~”Feb”~”1991”~”S. Jin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

301”~”Summary of the test results for the 1/4 cryomodule”~”CEBAF-TN-91-009”~”Feb”~”1991”~”W. Schneider, I. Campisi, K. Crawford, M. Drury, K. Jordan, P. Kelley, T. Lee, J. Marshall, J. Preble, J. Robb, E. Stitts, M. Wiseman”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

302”~”Summary of the test results for cryomodule I”~”CEBAF-TN-91-010”~”Feb”~”1991”~”W. Schneider”~”ACC”~”TN lists 31 authors. Also known as CEBAF-SRF-91-02-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

303”~”Envelope function for best superconducting cavity results”~”CEBAF-TN-91-011”~”Feb”~”1991”~”V. Nguyen, R. Sundelin”~”ACC”~”Also known as CEBAF-SRF-91-02-03-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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304”~”An estimation of the maximum applied power required to heat the HOM loads to a specified temperature”~”CEBAF-TN-91-012”~”Feb”~”1991”~”J. Patrick Kelley”~”OTP”~”Also known as CEBAF-SRF-91-02-04-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

305”~”An estimate of the maximum HOM load flange temperature resulting from dissipated RF power in the load”~”CEBAF-TN-91-013”~”Feb”~”1991”~”J. Patrick Kelley”~”ACC”~”Also known as CEBAF-SRF-91-02-05-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

306”~”Thin target muon yields and CEBAF end station dose estimates for photoproduction, electroproduction and pion decay”~”CEBAF-TN-91-014”~”Feb”~”1991”~”G. Stapleton”~”ACC”~”Includes addendum of 5 Dec. 1997, titled 'Thin target pion yields and muon dose rates due to pion decays.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

307”~”Proposal for stabilizing beam energy at better than the 10-4 level in Halls A and C”~”CEBAF-TN-91-015”~”Feb”~”1991”~”P. K. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

308”~”Superconducting cavities from high thermal conductivity niobium for CEBAF”~”CEBAF-TN-91-016”~”FEB”~”1991”~”Peter Kneisel, John Mammosser, Ganapati Rao Myneni,Kenji Saito”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

309”~”Surface resistance programs at CEBAF”~”CEBAF-TN-91-017”~”Mar”~”1991”~”Changnian Liang, Lawrence R. Doolittle”~”ACC”~”Also known as CEBAF SRF-91-03-02-EXA-Rev. A.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

310”~”An autocorrelation technique for measuring sub-picosecond bunch length using coherent transition radiation”~”CEBAF-TN-91-018”~”Mar”~”1991”~”Walter Barry”~”PHY”~”Includes addendum/errata of 18 Mar. 1991.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

311”~”A user's guide to the new interactive interface to the Model DIMAD”~”CEBAF-TN-91-019”~”Mar”~”1991”~”M. Bickley”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

312”~”WBS 1.0 vacuum interlock system”~”CEBAF-TN-91-020”~”Mar”~”1991”~”K. Jordan, K. Crawford, J. Marshall, S. O'Sullivan, R. Bundy, R. Nichols, B. Schneider, F. Dylla, R. Sundelin, J. Van Dyke”~”ACC”~”Also known as CEBAF-SRF-91-03-03-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

313”~”Summary of the test results for cryomodule #5”~”CEBAF-TN-91-021”~”Apr”~”1991”~” W. Schneider, R. Bundy, K. Crawford, M. Drury, K. Jordan, P. Kelley, T. Lee, J. Marshall, J. Preble, J. Robb, E. Stitts, M. Wiseman”~”ACC”~”Also known as CEBAF-SRF-91-04-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

314”~”Dispersion in commonly used cables”~”CEBAF-TN-91-022”~”Apr”~”1991”~”E. S. Smith”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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315”~”Commissioning of the injector cryounit”~”CEBAF-TN-91-023”~”Apr”~”1991”~”M. Drury, R. Bundy, K. Crawford, K. Jordan, P. Kelley, T. Lee, J. Marshall, J. Preble, M. Wiseman”~”ACC”~”Also known as CEBAF-SRF-91-04-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

316”~”Hall A line of sight shielding”~”CEBAF-TN-91-024”~”Apr”~”1991”~”K. A. Aniol, V. Punjabi”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

317”~”An optical equivalent to a negative length drift”~”CEBAF-TN-91-025”~”Apr”~”1991”~”D. R. Douglas, G. A. Krafft, B. C. Yunn”~”ACC”~”TN is marked 'Revised 24 April 1991.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

318”~”Linearity tests on the CEBAF viewer system”~”CEBAF-TN-91-026”~”May”~”1991”~”B. A. Bowling, P. K. Kloeppel, M. E. Wise”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

319”~”Another approach to the design of 85 MeV e-plus storage ring for CEBAF high luminosity, high disruption test facility”~”CEBAF-TN-91-027”~”May”~”1991”~”S. Jin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

320”~”Z0007 gun driver module user manual”~”CEBAF-TN-91-028”~”May”~”1991”~”J. Perry”~”ACC”~”Distributed TN lacked ending figure, a fold-out schematic of injector grid driver card. Available AccD files.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

321”~”Tolerable helium leak rates”~”CEBAF-TN-91-029”~”May”~”1991”~”R. Sundelin”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

322”~”A closed cycle cryogenic system for testing superconductivity RF cavities”~”CEBAF-TN-91-030”~”May”~”1991”~”C. Reece, J. Susta, T. Powers, B. Almeida”~”ACC”~”Also known as CEBAF-SRF-91-05-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

323”~”An automated RF control and data acquisition system for testing superconducting RF cavities”~”CEBAF-TN-91-031”~”May”~”1991”~”C. Reece, T. Powers, P. Kushnick”~”ACC”~”Also known as CEBAF-SRF-91-05-03-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

324”~”Performance of superconducting cavities for CEBAF”~”CEBAF-TN-91-032”~”May”~”1991”~”Peter Kneisel, John Mammosser Ganapati Rao, Kenji Saito, Ron Sundelin”~”ACC”~”Also known as CEBAF-SRF-91-05-04-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

325”~”Q degradation in superconducting niobium cavities”~”CEBAF-TN-91-033”~”May”~”1991”~”Kenji Saito, Peter Kneisel”~”ACC”~”Also known as CEBAF-SRF-91-05-05-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

326”~”CEBAF cryomodule testing”~”CEBAF-TN-91-034”~”May”~”1991”~”Kevin Jordan, Rich Bundy, I. E. Campisi, Ken Crawford, Mike Drury, J. Patrick Kelley, Tim Lee, Jim Marshall, Joe Preble, John Robb, William J. Schneider, Ed Stitts, Rondald Sundelin, Henry Whitehead, Mark Wiseman”~”ACC”~”Also known as CEBAF-SRF-91-05-06-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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327”~”OSP: Vertical Test Area cavity testing”~”CEBAF-TN-91-035”~”May”~”1991”~”C. Reece”~”ACC”~”Also known as CEBAF-SRF-91-05-07-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

328”~”Grounding of relay racks”~”CEBAF-TN-91-036”~”May”~”1991”~”Bob La Mora, Nick Dobeck”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

329”~”Cavity tuner performance”~”CEBAF-TN-91-037”~”May”~”1991”~”Tim Lee”~”ACC”~”Also known as CEBAF-SRF-91-05-08-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

330”~”Commissioning of injector cryomodule I”~”CEBAF-TN-91-038”~”May”~”1991”~”M. Drury, K. Crawford, K. Jordan, P. Kelley, T. Lee, J. Marshall, R. Nichols, J. Preble, W. Schneider, M. Wiseman”~”ACC”~”Also known as CEBAF-SRF-91-05-09-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

331”~”Summary of the test results for cryomodule #6”~”CEBAF-TN-91-039”~”Jun”~”1991”~”W. Schneider, R. Bundy, K. Crawford, M. Drury, K. Jordan, P. Kelley, T. Lee, J. Marshall, J. Preble, J. Robb, E. Stitts, M. Wiseman”~”ACC”~”Also known as CEBAF-SRF-91-06-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

332”~”CEBAF designed gate valve”~”CEBAF-TN-91-040”~”Jun”~”1991”~”Larry Turlington”~”ACC”~”Also known as CEBAF-SRF-91-06-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

333”~”Interference effects in HOM spectra”~”CEBAF-TN-91-041”~”Jun”~”1991”~”J. J. Bisognano”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

334”~”User manual for fast shutdown node module”~”CEBAF-TN-91-042”~”Jun”~”1991”~”J. Perry”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

335”~”Mechanical tuner for 5-cell cavity”~”CEBAF-TN-91-043”~”Jun”~”1991”~”P. Kneisel, J. Mammosser”~”ACC”~”Also known as CEBAF-SRF-91-06-03-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

336”~”Commissioning of injector cryomodule II”~”CEBAF-TN-91-044”~”Jul”~”1991”~”J. Marshall, K. Crawford, M. Drury, K. Jordan, P. Kelley, T. Lee, R. Nichols, J. Preble, W. Schneider, M. Wiseman”~”ACC”~”Also known as CEBAF-SRF-91-06-04-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

337”~”Specification for construction of absolute energy monitors for CEBAF”~”CEBAF-TN-91-045”~”Jul”~”1991”~”Ivan Karabekov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

338”~”Infrared heating of HOM loads during testing”~”CEBAF-TN-91-046”~”Jul”~”1991”~”R. Sundelin”~”ACC”~”First two paragraphs of introduction were replaced. See document in Accelerator Division files designated TN-91-046A, dated 9 Sept. 1991.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

339”~”Present limitations on VTA utilization”~”CEBAF-TN-91-047”~”Jul”~”1991”~”R. Sundelin”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

340”~”Low energy neutron shielding for the Hall A detector huts”~”CEBAF-TN-91-048”~”Jul”~”1991”~”K. A. Aniol”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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341”~”Criteria for, and evaluation of, candidate materials for the CEBAF cryounit's warm RF window”~”CEBAF-TN-91-049”~”Jul”~”1991”~”J. Patrick Kelley, Brian Carpenter, John Fischer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

342”~”Hydrogen depth profiling in niobium”~”CEBAF-TN-91-050”~”Jul”~”1991”~”Viet Nguyen, Larry Doolittle”~”ACC”~”Also known as CEBAF-SRF-91-07-11-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

343”~”The programmable controller-based CEBAF Personnel Safety System”~”CEBAF-TN-91-051”~”Jul”~”1991”~”R. Bork, J. Heefner, H. Robertson, R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

344”~”Propagation of second order focussing errors”~”CEBAF-TN-91-052”~”Jul”~”1991”~”Michael Fripp, David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

345”~”Magnet placement for the FET recirculation experiment”~”CEBAF-TN-91-053”~”Jul”~”1991”~”Nick Sereno”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

346”~”Precision beam energy measurement at CEBAF using synchrotron radiation detectors”~”CEBAF-TN-91-054”~”Jul”~”1991”~”Brian Bevins”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

347”~”Arcs, sparks, vibes, and beams”~”CEBAF-TN-91-055”~”Jul”~”1991”~”Larry Doolittle, Larry Phillips”~”ACC”~”Also known as CEBAF-SRF-91-07-30-EX. Addresses how electric fields at the warm and cold windows might be affected by microphonics, detuning, control mode, and beam current.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

348”~”Injector beamline design for 5 MeV, 25 MeV, and 45 MeV injector”~”CEBAF-TN-91-056”~”Aug”~”1991”~”D. Scheidecker, S. Simrock”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

349”~”Thermal cycling of RF window flange indium seals”~”CEBAF-TN-91-057”~”Aug”~”1991”~”G. Rao Myneni, P. Kneisel”~”ACC”~”Also known as CEBAF-SRF-91-08-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

350”~”Mechanical properties of RF window frame and cavity flange Nb”~”CEBAF-TN-91-058”~”Aug”~”1991”~”Ganapati R. Myneni”~”ACC”~”Also known as CEBAF-SRF-91-08-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

351”~”Implementing correlation techniques with null character pseudorandom sequences for monitoring beam position in CEBAF”~”CEBAF-TN-91-059”~”Aug”~”1991”~”Mitchell Golner”~”GST”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

352”~”Beam diagnostic viewer system (CEBAF ref. dwg. B0010D01)”~”CEBAF-TN-91-060”~”Aug”~”1991”~”Hsi Feng, Peter Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

353”~”Method of using electron beam welder to study window arcs and punctures”~”CEBAF-TN-91-061”~”Aug”~”1991”~”R. Sundelin”~”ACC”~”Also known as TPN-91-007.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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354”~”A first design of an 8-GeV positron storage ring for a B-factory”~”CEBAF-TN-91-062”~”Aug”~”1991”~”S. Jin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

355”~”Transverse beam breakup at CEBAF”~”CEBAF-TN-91-063”~”Aug”~”1991”~”Michael Fripp, Joseph Bisognano”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

356”~”Beam diagnostic profile monitor system (harp)”~”CEBAF-TN-91-064”~”Aug”~”1991”~”H. Feng”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

357”~”Report on HOM loads and revision of specification”~”CEBAF-TN-91-065”~”Aug”~”1991”~”J. Bisognano, I. Campisi”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

358”~”Radiological assessment of the design of the 600 MeV test beam dump”~”CEBAF-TN-91-066”~”Aug”~”1991”~”G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

359”~”Phase yielding minimum energy spread for a single bunch including the RF curvature and the longitudinal wake”~”CEBAF-TN-91-067”~”Aug”~”1991”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

360”~”A reinjection chicane for the west recombiner”~”CEBAF-TN-91-068”~”Sep”~”1991”~”D. R. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

361”~”More on the transfer matrix of a cavity”~”CEBAF-TN-91-069”~”Sep”~”1991”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

362”~”Arc studies of the injector cryomodules”~”CEBAF-TN-91-070”~”Sep”~”1991”~”M. Drury, R. Abbott, K. Crawford, L. Doolittle, C. Hovater, K. Jordan, W. Lacy, J. Preble, C. Reece, W. Schneider”~”ACC”~”Also known as CEBAF-SRF-91-09-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

363”~”A dedicated FEL driver design”~”CEBAF-TN-91-071”~”Sep”~”1991”~”D. R. Douglas, J. J. Bisognano, G. A. Krafft, D. V. Neuffer, B. C. Yunn”~”ACC”~”Heading on AccD file copy says: 'Revised 12 September 1991.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

364”~”Design considerations for implementing alternative RF separator schemes”~”CEBAF-TN-91-072”~”Sep”~”1991”~”D. R. Douglas”~”ACC”~”Heading on AccD file copy says: 'Revised 19 September 1991.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

365”~”Waveguide flange and seal investigations”~”CEBAF-TN-91-073”~”Sep”~”1991”~”Mark A. Wiseman”~”ACC”~”Also known as CEBAF-SRF-91-09-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

366”~”FEL design using the CEBAF linac”~”CEBAF-TN-91-074”~”Sep”~”1991”~”G. R. Neil, J. J. Bisognano, D. Douglas, H. F. Dylla, G. A. Krafft, C. W. Leemann, P. Liger, D. V. Neuffer, C. K. Sinclair, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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367”~”Niobium thread pull tests”~”CEBAF-TN-91-075”~”Sep”~”1991”~”Mark A. Wiseman”~”ACC”~”Dated '8/21/91, Rev. 9/23/91.' Also known as CEBAF-SRF-91-09-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

368”~”Improved cables for signal transmission”~”CEBAF-TN-91-076”~”Sep”~”1991”~”John Perry, Dave Seidman”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

369”~”An expanded digital input system”~”CEBAF-TN-91-077”~”Sep”~”1991”~”J. Hansknecht”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

370”~”History of the warm beampipe vacuum system”~”CEBAF-TN-91-078”~”Sep”~”1991”~”Joseph Van Dyke, John Heckman”~”ACC”~”Also known as CEBAF-SRF-91-10-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

371”~”Beam viewer/beam profile monitors cable numbering system”~”CEBAF-TN-91-079”~”Oct”~”1991”~”T. A. Smith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

372”~”Beam breakup in a superconducting IRFEL”~”CEBAF-TN-91-080”~”Oct”~”1991”~”G. A. Krafft, M. Xie”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

373”~”Alignment tolerances for CEBAF accelerating cavities”~”CEBAF-TN-91-081”~”Oct”~”1991”~”J. J. Bisognano, D. R. Douglas, B. C. Yunn”~”ACC”~”TN is marked 'Revised 15 October 1991.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

374”~”Tunnel shielding walls and NFPA guidelines”~”CEBAF-TN-91-082”~”Oct”~”1991”~”James R. Boyce”~”ACC”~”TN is mistakenly marked TN-91-123. Cover sheet says TN-91-082.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

375”~”CEBAF naming conventions (rev. 2)”~”CEBAF-TN-91-083”~”OCT”~”1991”~”B. Hartline, C. W. Leemann, C. H. Rode, T. L. Mann”~”PRJ”~”Use Tom Hassler's rev. 2 of 13 Dec. 93, 'Changing the CEBAF nomenclature document.' following original document (Rev. 2 cancels and supersedes rev. 1, the addendum by C. H. Rode distributed 10 Dec. 92. Original TN was dated 21 Oct. 91.)”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

376”~”English translation of RF control system faults”~”CEBAF-TN-91-084”~”Oct”~”1991”~”Charlene B. West, George Lahti, Bruce Morgan”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

377”~”Pump down of IA 90/91 on 28 Oct. 91 in dewar 8”~”CEBAF-TN-91-085”~”Oct”~”1991”~”Bruce Almeida, Ganapati R. Myneni, Raymond Jacobs”~”ACC”~”Also known as CEBAF-SRF-91-10-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

378”~”Summary of test results for quarter cryomodule #9”~”CEBAF-TN-91-086”~”Nov”~”1991”~”W. Schneider, R. Bundy, K. Crawford, M. Drury, K. Jordan, J. Marshall, J. Preble, J. Robb, E. Stitts, M. Wiseman”~”ACC”~”Also known as CEBAF-SRF-91-11-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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379”~”Basic noise considerations for CEBAF beam position monitors”~”CEBAF-TN-91-087”~”Nov”~”1991”~”W. Barry”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

380”~”Error analysis of the beam viewer system for quantitative measurements”~”CEBAF-TN-91-088”~”“~”1991”~”S. Jin, P. Kloeppel”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

381”~”Heat stress survey, summer 1991”~”CEBAF-TN-91-089”~”Nov”~”1991”~”P. Hunt, D. Braswell, R. Hugate, R. Holt, J. Kozma”~”ACC”~”Title may be listed in other ways, including ' 'Summer Heat Stress Survey,' North and South Linac Service Bldgs.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

382”~”The cavity tuner LVDT as a control device”~”CEBAF-TN-91-090”~”Nov”~”1991”~”James Marshall”~”ACC”~”Also known as CEBAF-SRF-91-11-22-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

383”~”[Unused TN number]”~”CEBAF-TN-91-091”~”Dec”~”1991”~”[Unused TN number]”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

384”~”In search of missing dispersion: the effect of dipole end fields in the FET recirculation”~”CEBAF-TN-91-092”~”Dec”~”1991”~”D. R. Douglas, G. A. Krafft, D. V. Neuffer, N. Sereno, M. G. Tiefenback”~”ACC”~”TN is marked 'Revised 10 December 1991.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

385”~”[Unused TN number]”~”CEBAF-TN-91-093”~”Dec”~”1991”~”[Unused TN number]”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

386”~”On the automatic pumpdown of the VTA dewars”~”CEBAF-TN-91-094”~”Dec”~”1991”~”William C. Chronis”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

387”~”The effect of observed dipole end fields on beam transport system optics”~”CEBAF-TN-91-095”~”Dec”~”1991”~”D. R. Douglas”~”ACC”~”TN is marked 'Revised 10 December 1991.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

388”~”Performance of CEBAF IR-FEL”~”CEBAF-TN-91-096”~”Dec”~”1991”~”B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

389”~”Steering magnets for beam separation”~”CEBAF-TN-91-097”~”Dec”~”1991”~”Z. Li, Dave Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

390”~”Error analysis for the 1645 MeV extraction beam line”~”CEBAF-TN-91-098”~”Dec”~”1991”~”Zenghai Li, Dave Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

391”~”[Unused TN number]”~”CEBAF-TN-91-099”~”Dec”~”1991”~”[Unused TN number]”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

392”~”Spreader-recombiner design guidelines”~”CEBAF-TN-91-100”~”Dec”~”1991”~”D. Douglas”~”ACC”~”TN is marked 'Revised 10 December 1991.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

393”~”MCEEP: Monte Carlo for electro-nuclear coincidence experiments”~”CEBAF-TN-91-101”~”Dec”~”1991”~”P. E. Ulmer”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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394”~”High-power operation of two-color FELs”~”CEBAF-TN-91-102”~”Dec”~”1991”~”J. J. Bisognano, B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

395”~”Behavior of electropolished niobium cavities under different cooldown conditions”~”CEBAF-TN-91-103”~”Dec”~”1991”~”K. Saito, E. Kako, S. Noguchi, P. Kneisel, H. Miwa, T. Suzuki”~”ACC”~”Also known as CEBAF-SRF-91-12-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

396”~”Observation of Q-degradation in superconducting niobium cavities due to cooldown conditions”~”CEBAF-TN-91-104”~”Dec”~”1991”~”Kenji Saito, Peter Kneisel”~”ACC”~”Also known as CEBAF-SRF-91-12-03-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

397”~”Sensitivity of CEBAF 5-cell cavities to external pressure”~”CEBAF-TN-91-105”~”Dec”~”1991”~”P. Kneisel, A. Heidt, J. Mammosser, G. M. Rao”~”ACC”~”Also known as CEBAF-SRF-91-12-04-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

398”~”Floating wire analogue for absolute momentum calibration of HMS”~”CEBAF-TN-91-106”~”Dec”~”1991”~”C. Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

399”~”Field mapping for Hall C HMS”~”CEBAF-TN-91-107”~”Dec”~”1991”~”C. Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

400”~”Determining chopper alignment with the CEBAF camera system”~”CEBAF-TN-91-108”~”Dec”~”1991”~”B. Bowling, P. Kloeppel, G. Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

401”~”Full and half machine cooldown options”~”CEBAF-TN-91-109”~”Jan”~”1991”~”C. H. Rode”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

402”~”Temperature dependence of the Q-degradation of an anodized 5-cell cavity”~”CEBAF-TN-92-001”~”Jan”~”1992”~”K. Saito, P. Kneisel”~”ACC”~”Also known as CEBAF-SRF-92-01-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

403”~”Warm window evaluation”~”CEBAF-TN-92-002”~”Jan”~”1992”~”Viet Nguyen, John Fischer Joe Preble”~”ACC”~”Also known as CEBAF-SRF-92-01-02-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

404”~”A review of quadrupole field homogeneity specifications”~”CEBAF-TN-92-003”~”Jan”~”1992”~”D. R. Douglas”~”ACC”~”TN says: 'Revised 22 January 1992.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

405”~”Magnet measurements for the FET recirculation experiment”~”CEBAF-TN-92-004”~”Jan”~”1992”~”J. Karn, N. Sereno”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

406”~”Non-isochronous recirculation at CEBAF”~”CEBAF-TN-92-005”~”Jan”~”1992”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

407”~”[Unused TN number]”~”CEBAF-TN-92-006”~”“~”1992”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

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408”~”Summary of tests results for cryomodule #8”~”CEBAF-TN-92-007”~”Jan”~”1992”~”W. Schneider, R. Bundy, M. Drury, K. Jordan, J. Marshall, J. Preble, J. Robb, Q. Saulter, E. Stitts, M. Wiseman”~”ACC”~”Also known as CEBAF-SRF-92-01-03-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

409”~”Emittance dilution and separator phase and amplitude stability requirements”~”CEBAF-TN-92-008”~”Jan”~”1992”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

410”~”A review of the arc dipole alignment specification”~”CEBAF-TN-92-009”~”“~”1992”~”D. R. Douglas”~”“~”TN says: 'Revised 29 April 1992.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

411”~”[Unused TN number]”~”CEBAF-TN-92-010”~”“~”1992”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

412”~”Hall 'B' oxygen deficiency analysis under spills of cryogenic fluids”~”CEBAF-TN-92-011”~”Dec”~”1992”~”John O'Meara, Walter Tuzel”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

413”~”Automatic beam spot detection for the CEBAF camera system”~”CEBAF-TN-92-012”~”Feb”~”1992”~”B. Bowling, C. McDowell”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

414”~”Front End Test cavity tuning data”~”CEBAF-TN-92-013”~”Feb”~”1992”~”Curt Hovater, Stefan Simrock”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

415”~”The possibility of absolute measurement of beam energy using backscattering of a transverse plane electromagnetic wave”~”CEBAF-TN-92-014”~”Feb”~”1992”~”I. P. Karabekov, V. V. Musakhanian”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

416”~”Comparison of the transfer matrix elements for two quadrupole fringe field models”~”CEBAF-TN-92-015”~”Mar”~”1992”~”N. Sereno”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

417”~”Vertex separation in an asymmetric B-factory”~”CEBAF-TN-92-016”~”Mar”~”1992”~”B. Norum”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

418”~”Beam position monitor controls software”~”CEBAF-TN-92-017”~”Mar”~”1992”~”B. Bowling”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

419”~”Analysis of TACL network algorithms with recommendations for improving performance”~”CEBAF-TN-92-018”~”Mar”~”1992”~”Sally Schaffner, Valerie Corker”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

420”~”Cavity resonator as wiggler: use of Compton scattering to measure beam energy”~”CEBAF-TN-92-019”~”Mar”~”1992”~”Robert Rossmanith, Peter K. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

421”~”How does indium contamination influence cavity performance?”~”CEBAF-TN-92-020”~”Mar”~”1992”~”P. Kneisel, K. Saito”~”ACC”~”Also known as CEBAF-SRF-92-03-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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422”~”Q-degradation in high purity niobium cavities: dependence on temperature and RRR-value”~”CEBAF-TN-92-021”~”Mar”~”1992”~”K. Saito, P. Kneisel”~”ACC”~”Also known as CEBAF-SRF-92-04-01-EXA.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

423”~”North linac operation at elevated temperatures”~”CEBAF-TN-92-022”~”Apr”~”1992”~”C. Hovater, C. H. Rode”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

424”~”Summary of test results for cryomodule #10”~”CEBAF-TN-92-023”~”Apr”~”1992”~”W. Schneider, R. Bundy, M. Drury, K. Jordan, J. Marshall, J. Preble, J. Robb, Q. Saulter, E. Stitts, M. Wiseman”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

425”~”Evaluation of the CEBAF Injector Superconducting Cavity Performance”~”CEBAF-TN-92-024”~”Apr”~”1992”~”Joe Preble, Michael Drury, James Marshall, John Robb, Quentin Saulter, Bill Schneider, Mark Wiseman”~”ACC”~”Though confirmed (March 1998) to have been distributed, TN is not available in AccD or library files.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

426”~”Gravitational wire sag in non-rigid drift chamber structures”~”CEBAF-TN-92-025”~”Jun”~”1992”~”M. Chew, J. O'Meara, W. Tuzel”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

427”~”Commissioning of north linac cryomodule 1”~”CEBAF-TN-92-026”~”Jun”~”1992”~”M. Drury, J. Marshall, J. Preble, Q. Saulter, W. Schneider, M. Wiseman”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

428”~”Using the 70 MHz-bunch length chassis”~”CEBAF-TN-92-027”~”Jun”~”1992”~”Curt Hovater, Bruce Bowling”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

429”~”Manufacturing of the 9-cell KEK/CEBAF-collaboration cavity”~”CEBAF-TN-92-028”~”Jun”~”1992”~”P. Kneisel, K. Saito, L. Turlington, J. Brawley”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

430”~”TACL user process CAMAC I/O library”~”CEBAF-TN-92-029”~”Jun”~”1992”~”Marty Wise”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

431”~”Macros for the logic editor”~”CEBAF-TN-92-030”~”Jul”~”1992”~”Scott Higgins”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

432”~”Reconciliation of window Q measurements”~”CEBAF-TN-92-031”~”Jul”~”1992”~”L. Doolittle, P. Kushnick”~”ACC”~”Also known as CEBAF-SRF-92-07-01-EX.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

433”~”A theorem relating luminosity and deflection”~”CEBAF-TN-92-032”~”Jul”~”1992”~”G. A. Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

434”~”Beam loss monitor control module model Z0005”~”CEBAF-TN-92-033”~”Jul”~”1992”~”John Perry, Eric Woodworth”~”ACC”~”Listed sometimes as 'User manual for beam loss monitor controller.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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435”~”Gain and power of CEBAF FELs”~”CEBAF-TN-92-034”~”Jul”~”1992”~”Zenghai Li, B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

436”~”A new scheme to compensate for emittance in FELs (and synchrotrons?)”~”CEBAF-TN-92-035”~”Jul”~”1992”~”George R. Neil, Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

437”~”Performance and installation status of superconducting cavities at CEBAF”~”CEBAF-TN-92-036”~”Aug”~”1992”~”C. Reece, J. Benesch, H. F. Dylla, J. Mammosser, J. Preble, W. Schneider”~”ACC”~”Paper contributed to XVth International Conference on High Energy Accelerators, 20-24 July 1992, Hamburg, Germany.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

438”~”Strange attractors in electron storage rings”~”CEBAF-TN-92-037”~”Aug”~”1992”~”David Boozer”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

439”~”Superconducting niobium cavities with high gradients”~”CEBAF-TN-92-038”~”Aug”~”1992”~”P. Kneisel, K. Saito”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

440”~”Photon flux computation for the HRS spectrometers at forward angle”~”CEBAF-TN-92-039”~”Sep”~”1992”~”Zein-Eddi Meziani”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

441”~”A guide to RFxxxop -- the RF expert TACL screen”~”CEBAF-TN-92-040”~”Sep”~”1992”~”Curt Hovater, David Bains, Stefan Simrock”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

442”~”[Unused TN number]”~”CEBAF-TN-92-041”~”Sep”~”1992”~”[Unused TN number]”~”PHY”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

443”~”North linac 1L15 LHe spill test”~”CEBAF-TN-92-042”~”Sep”~”1992”~”C. H. Rode”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

444”~”The impact of variations in the effective length of arc dipoles”~”CEBAF-TN-92-043”~”Sep”~”1992”~”D. R. Douglas, L. H. Harwood”~”ACC”~”TN header says: 'Revised 21 September 1992.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

445”~”Energy measurement on beam switchyard line of Hall C”~”CEBAF-TN-92-044”~”Sep”~”1992”~”R. V. Servranckx”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

446”~”150 MeV run parameters”~”CEBAF-TN-92-045”~”Oct”~”1992”~”C. H. Rode, J. Preble, W. J. Schneider”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

447”~”Time response requirement for the BLM/FSD system”~”CEBAF-TN-92-046”~”Oct”~”1992”~”C. K. Sinclair”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

448”~”A method for achieving minimal bunch length in the CEBAF injector”~”CEBAF-TN-92-047”~”Oct”~”1992”~”J. A. Jackson, G. A. Krafft, R. Abbott”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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449”~”Study of north linac dump optics with reduced number of quadrupoles, and an optional high dispersion region in the extraction area”~”CEBAF-TN-92-048”~”Oct”~”1992”~”Y. Chao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

450”~”Accelerator physics comparisons of storage-ring/storage-ring and linac/storage ring B-factory colliders”~”CEBAF-TN-92-049”~”Nov”~”1992”~”David Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

451”~”HARP user's manual”~”CEBAF-TN-92-050”~”Nov”~”1992”~”R. Abbott, B. Bowling, E. Woodworth”~”ACC”~”Marked 'Preliminary.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

452”~”Search for ODH victims in accelerator service buildings”~”CEBAF-TN-92-051”~”Nov”~”1992”~”Tom Hassler, Steve Suhring”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

453”~”Lift of transparency titles from papers submitted at the XVth HEACC '92 conference”~”CEBAF-TN-92-052”~”Nov”~”1992”~”Ronald M. Sundelin”~”OTP”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

454”~”Bunchlength measurement by backphasing”~”CEBAF-TN-92-053”~”Nov”~”1992”~”Philippe Liger, Robert Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

455”~”Hall C beam momentum measurement system”~”CEBAF-TN-92-054”~”Nov”~”1992”~”D. Neuffer, C. Yan, R. Carlini”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

456”~”Temperature dependence of CEBAF SRF cavity performance (plus illustration of assorted cavity phenomena)”~”CEBAF-TN-92-055”~”Nov”~”1992”~”Charles Reece”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

457”~”Further notes on the emittance compensation scheme”~”CEBAF-TN-92-056”~”Nov”~”1992”~”George R. Neil, Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

458”~”Electron beam specifications for the CEBAF UVFEL”~”CEBAF-TN-92-057”~”Nov”~”1992”~”Stephen Benson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

459”~”RF-superconductivity technology: its sensitivity to surface conditions”~”CEBAF-TN-92-058”~”Nov”~”1992”~”P. Kneisel”~”ACC”~”Invited paper presented at the AVS Symposium, November 1992, Chicago.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

460”~”Analysis and simulation of the measurement of cavity resonance frequency”~”CEBAF-TN-92-059”~”Dec”~”1992”~”Rui Li, Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

461”~”[Unused TN number]”~”CEBAF-TN-92-060”~”Dec”~”1992”~”[Unused TN number]”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

462”~”Proposal for a beam profile monitor using a static wire pickup”~”CEBAF-TN-92-061”~”Dec”~”1992”~”Michael G. Tiefenback, David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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463”~”Emittance, acceptance, and phase space area”~”CEBAF-TN-92-062”~”Dec”~”1992”~”Michael Tiefenback”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

464”~”Maximum beam transport through the FEL buncher”~”CEBAF-TN-92-063”~”Dec”~”1992”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

465”~”Design criteria for beam dumps for Halls A and C”~”CEBAF-TN-92-064”~”Dec”~”1992”~”C. K. Sinclair”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

466”~”Tensile test of CLAS links AB and CD”~”CEBAF-TN-93-001”~”Jan”~”1993”~”Walter Tuzel, John O'Meara”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

467”~”The use of electronic CAE/CAD/CAM for rapid development of instrumentation in the SRF Department”~”CEBAF-TN-93-002”~”Jan”~”1993”~”Tom Powers”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

468”~”CEBAF intermediate power beam tune up dump”~”CEBAF-TN-93-003”~”Jan”~”1993”~”C. K. Sinclair,R. J. Vetterlein”~”ACC”~”TN includes 'Temperature predictions and operating limits for the CEBAF tune up dump,' prepared by Robert J. Vetterlein following the ARR-2 panel's request.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

469”~”How the linac beam position monitors 'work'“~”CEBAF-TN-93-004”~”Jan”~”1993”~”Geoffrey Krafft, Alicia Hofler”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

470”~”The TACL logic for the CEBAF fast shutdown system”~”CEBAF-TN-93-005”~”Jan”~”1993”~”Bruce Bowling, Jim Coleman, Jorg Kewisch, Pete Kloeppel, Bonnie Montjar, John Perry, Marty Wise, Eric Woodworth”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

471”~”Progress report on the superharp”~”CEBAF-TN-93-006”~”Jan”~”1993”~”C. Yan, P. Adderley, R. Carlini, E. Feldl, H. Feng”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

472”~”Description of the BPM control screens”~”CEBAF-TN-93-007”~”Jan”~”1993”~”Alicia Hofler”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

473”~”On setting the default masks for the fast shutdown system”~”CEBAF-TN-93-008”~”Jan”~”1993”~” Peter Kloeppel, Geoff Krafft, John Perry, Steve Suhring”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

474”~”Space charge effects on the beam dynamics of electrons in the FEL injector”~”CEBAF-TN-93-009”~”Jan”~”1993”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

475”~”Processing the harp signals in the frequency domain”~”CEBAF-TN-93-010”~”Jan”~”1993”~”Rui Li”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

476”~”Parasitic electron bunches in the FEL injector”~”CEBAF-TN-93-011”~”Jan”~”1993”~” Hongxiu Liu, Steve Benson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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477”~”Personnel safety system: proposal for segmentation of the accelerator tunnel and its interlock systems”~”CEBAF-TN-93-012”~”Jan”~”1993”~”H. Robertson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

478”~”Bunch length receiver”~”CEBAF-TN-93-013”~”Jan”~”1993”~”Richard Abbott”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

479”~”Beam position monitoring by phase demodulation”~”CEBAF-TN-93-014”~”Jan”~”1993”~”Richard Abbott”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

480”~”Curious behavior of a cavity pair”~”CEBAF-TN-93-015”~”Feb”~”1993”~”Larry Doolittle”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

481”~”A bunch length diagnostic utilizing coherent transition radiation”~”CEBAF-TN-93-016”~”Feb”~”1993”~”E. Price, J. Jackson, G. Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

482”~”Measurement of longitudinal beam polarization by synchrotron radiation”~”CEBAF-TN-93-017”~”Feb”~”1993”~”I. P. Karabekov, R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

483”~”[Unused TN number]”~”CEBAF-TN-93-018”~”Feb”~”1993”~”[Unused TN number]”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

484”~”Full RF operations: software goals”~”CEBAF-TN-93-019”~”Mar”~”1993”~”Lahti, George E.”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

485”~”Beam energy absolute measurement using visible light of synchrotron radiation”~”CEBAF-TN-93-020”~”Mar”~”1993”~”I. P. Karabekov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

486”~”On edge emittance of the nuclear physics beam”~”CEBAF-TN-93-021”~”Mar”~”1993”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

487”~”On minimum emittance of the nuclear physics beam”~”CEBAF-TN-93-022”~”Mar”~”1993”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

488”~”Control system transition: RF viewpoint”~”CEBAF-TN-93-023”~”Mar”~”1993”~”Lahti, George E.”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

489”~”TACL to ACNET: RF”~”CEBAF-TN-93-024”~”Mar”~”1993”~”Lahti, George E.”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

490”~”Cooling systems for the north linac intermediate power tune up dump”~”CEBAF-TN-93-025”~”Mar”~”1993”~”George Biallas, Nick Monk”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

491”~”A proposal for experimental investigation of longitudinal spin polarimetry and absolute energy measurement by synchrotron radiation”~”CEBAF-TN-93-026”~”Apr”~”1993”~”I. P. Karabekov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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492”~”A high pressure ultra-pure water rinsing system for niobium cavities”~”CEBAF-TN-93-027”~”Apr”~”1993”~”P. Kneisel, B. Lewis, L. Turlington”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

493”~”Thermal and mechanical properties of heat treated Nb”~”CEBAF-TN-93-028”~”Apr”~”1993”~”M. G. Rao, P. Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

494”~”RF software tasks for 1993”~”CEBAF-TN-93-029”~”Apr”~”1993”~”George E. Lahti”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

495”~”[Unused TN number]”~”CEBAF-TN-93-030”~”“~”1993”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

496”~”Emergency management exercise report”~”CEBAF-TN-93-031”~”May”~”1993”~”Tom Hassler”~”ACC”~”May sometimes be listed as 'Final report of emergency management exercise: fire in the Test Lab.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

497”~”By-passing the cavities”~”CEBAF-TN-93-032”~”May”~”1993”~”O. Bazhenov, L. Merminga, S. Simrock”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

498”~”Gradient calibration of north linac with beam”~”CEBAF-TN-93-033”~”May”~”1993”~”O. Bazhenov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

499”~”Dose rate at north access hatch due to 45 MeV dump”~”CEBAF-TN-93-034”~”May”~”1993”~”Robert May, Scott Schwahn”~”ACC”~”Also known as Radiological Control Group Note #93-10.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

500”~”Requirements of the CEBAF beam viewer system”~”CEBAF-TN-93-035”~”May”~”1993”~”A. Silva”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

501”~”ESR network communication hardware requirements”~”CEBAF-TN-93-036”~”May”~”1993”~”Omar Garza”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

502”~”A new surface resistance measurement method with ultrahigh sensitivity”~”CEBAF-TN-93-037”~”May”~”1993”~”Changnian Liang”~”ACC”~”Ph.D. dissertation.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

503”~”On the CEBAF RF-separator design”~”CEBAF-TN-93-038”~”May”~”1993”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

504”~”ESR communication link cost analysis”~”CEBAF-TN-93-039”~”Jun”~”1993”~”Omar Garza”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

505”~”A procedure for tuning arc optical properties”~”CEBAF-TN-93-040”~”Jun”~”1993”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

506”~”Cryomodule high gradient operations”~”CEBAF-TN-93-041”~”Jun”~”1993”~”Curt Hovater, Mark Augustine, Kurt Brown, Marie Keesee, Claus Rode, Quentin Saulter, Steve Suhring”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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507”~”Thermal conductivity measurements on electrodeposited copper in the temperature range between 2 K and 40 K”~”CEBAF-TN-93-042”~”Jun”~”1993”~”G. M. Rao, P. Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

508”~”Interactive beam optics design program for the CEBAF linacs”~”CEBAF-TN-93-043”~”Jun”~”1993”~”A. Nguyen-tuong, B. A. Bowling, J. Kewisch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

509”~”End Station Refrigerator communication link specifications”~”CEBAF-TN-93-044”~”Jun”~”1993”~”Omar Garza”~”ACC”~”Title may also be listed as 'ESR communications link specifications.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

510”~”Beam symmetry conservation using a dipole with zero pole face rotations and uniform field”~”CEBAF-TN-93-045”~”Jun”~”1993”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

511”~”A procedure for tuning FODO quadrupole lattices”~”CEBAF-TN-93-046”~”“~”1993”~”D. R. Douglas, Y. Chao, A. Hofler, R. Lauze', E. Price”~”“~”Ambiguities in designation of this TN-93-046: some cover forms are mismarked 93-043, and some copies of the TN itself are mismarked 92-043.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

512”~”The CEBAF tunnel paging system”~”CEBAF-TN-93-047”~”Jun”~”1993”~”Mark Crofford, Greg Arnold, Delander Holder, Curt Hovater”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

513”~”Illustrative simulation of pseudorandom scheme for detection of multiple beams in the linac”~”CEBAF-TN-93-048”~”Jun”~”1993”~”John Perry”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

514”~”Magnet field to current conversion”~”CEBAF-TN-93-049”~”Jun”~”1993”~”S. D. Witherspoon”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

515”~”[Unused TN number]”~”CEBAF-TN-93-050”~”“~”1993”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

516”~”Introduction to the RF controls software”~”CEBAF-TN-93-051”~”Jun”~”1993”~”George E. Lahti”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

517”~”On axisymmetric transport through axially asymmetric beams transport elements”~”CEBAF-TN-93-052”~”Jul”~”1993”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

518”~”CEBAF's SRF cavity manufacturing experience”~”CEBAF-TN-93-053”~”Jul”~”1993”~”J. F. Benesch, C. Reece”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

519”~”Transportation of polarized beams through the CEBAF arcs”~”CEBAF-TN-93-054”~”Jul”~”1993”~”I. Karabekov, R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

520”~”EGS analysis of a mode of beam damage to the extraction septa”~”CEBAF-TN-93-055”~”Aug”~”1993”~”P. K. Kloeppel,. C. K. Sinclair”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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521”~”Beam symmetry conservation through a parallel sided magnet”~”CEBAF-TN-93-056”~”Aug”~”1993”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

522”~”The use of extractor gauge at LHe temperature”~”CEBAF-TN-93-057”~”Aug”~”1993”~”M. G. Rao, P. Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

523”~”Design of a low noise ionization chamber for beam current monitoring at CEBAF”~”CEBAF-TN-93-058”~”Aug”~”1993”~”M. J. Niczyporuk, D. J. Mack”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

524”~”On the possibility of accurate measurements of electron beam energy by means of Moller scattering”~”CEBAF-TN-93-059”~”Aug”~”1993”~”L. G. Levchuk, P. V. Sorokin, P. E. Ulmer”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

525”~”Beam loss monitor sensor calibration system”~”CEBAF-TN-93-060”~”Aug”~”1993”~”Andrew Policastro, John Perry”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

526”~”Synchronous detector for beam position monitors”~”CEBAF-TN-93-061”~”Aug”~”1993”~”L. Ninan, L. Doolittle, S. Simrock”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

527”~”Stability tests of XP2282B phototube-base combinations”~”CEBAF-TN-93-062”~”Aug”~”1993”~”F. Farzanpay, D. J. Mack”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

528”~”Longitudinal dynamics in the FEL recirculating linac with energy recovery”~”CEBAF-TN-93-063”~”Aug”~”1993”~”David Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

529”~”CAVTEK manual”~”CEBAF-TN-93-064”~”Aug”~”1993”~”Valentin I. Spitkovsky”~”GST”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

530”~”CAVGLE manual”~”CEBAF-TN-93-065”~”Aug”~”1993”~”Valentin I. Spitkovsky”~”GST”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

531”~”CAPSULE manual”~”CEBAF-TN-93-066”~”Aug”~”1993”~”Valentin I. Spitkovsky”~”GST”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

532”~”Converting the CAMAC harp system to a VME configuration”~”CEBAF-TN-93-067”~”Sep”~”1993”~”O. Garza, E. Woodworth”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

533”~”Severe aperture constraints at the extraction septa”~”CEBAF-TN-93-068”~”Sep”~”1993”~”David Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

534”~”Emittance dilution arising from betatron phase ellipse mismatch”~”CEBAF-TN-93-069”~”Sep”~”1993”~”D. Douglas, Y. Chao, H. Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

535”~”Synchrotron light monitoring at CEBAF”~”CEBAF-TN-93-070”~”Sep”~”1993”~”C. Liang, J. Denard, E. Feldl, J. Groleau, K. Jordan, I. Karabekov, P. Kloeppel, R. Rossmanith”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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536”~”A procedure for the tune-up of the injection chicane”~”CEBAF-TN-93-071”~”Oct”~”1993”~”D. Douglas, J. van Zeijts”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

537”~”Test results on the 25 W amplifier for the buncher”~”CEBAF-TN-93-072”~”Oct”~”1993”~”G. Krafft, D. Wang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

538”~”Transfer Matrix Measurements, BPM Resolution, and a Complete Recipe for Error Determination in These Measurements”~”CEBAF-TN-93-073”~”Sep”~”1993”~”Yu-Chiu Chao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

539”~”High power emittance and momentum spread measurements”~”CEBAF-TN-93-074”~”Oct”~”1993”~”D. Douglas, Y. Chao, J. van Zeijts”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

540”~”Analysis of observed 60 Hz beam motion in the FET accounting for betatron and gamma differences”~”CEBAF-TN-93-075”~”Oct”~”1993”~”R. Legg, D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

541”~”Minimization of the non-relativistic phase slip effect on the beam energy spread”~”CEBAF-TN-93-076”~”Oct”~”1993”~”Rui Li, Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

542”~”Bunch length monitoring with coherent synchrotron radiation”~”CEBAF-TN-93-077”~”Oct”~”1993”~”E. J. Price, G. Krafft, P. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

543”~”Spot-light injection tuning for north linac”~”CEBAF-TN-93-078”~”Oct”~”1993”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

544”~”Beam optics experiment on the modified injector”~”CEBAF-TN-93-079”~”Oct”~”1993”~”H. Liu, R. Kazimi, D. Kehne”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

545”~”Muon cooling and applications”~”CEBAF-TN-93-080”~”Oct”~”1993”~”David V. Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

546”~”[Unused TN number]”~”CEBAF-TN-93-081”~”“~”1993”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

547”~”Measurement of linac BPMs at 1 GHz”~”CEBAF-TN-93-082”~”Oct”~”1993”~”G. Krafft, D. Wang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

548”~”Emergency management exercise report: fire in the electrical equipment room under the counting house”~”CEBAF-TN-93-083”~”Nov”~”1993”~”Tom Hassler”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

549”~”Current status of our understanding of electronic phenomena at the cold window”~”CEBAF-TN-93-084”~”Dec”~”1993”~”Larry Phillips”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

550”~”Beam symmetry preservation experiment on the modified injector”~”CEBAF-TN-93-085”~”Nov”~”1993”~”H. Liu, R. Kazimi, D. Kehne”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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551”~”Comments on synchrotron beam monitoring”~”CEBAF-TN-93-086”~”Nov”~”1993”~”George R. Neil”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

552”~”Longitudinal impedance of CEBAF linac”~”CEBAF-TN-93-087”~”Nov”~”1993”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

553”~”Abstract of N. Sereno's Ph.D. thesis: Experimental studies of multipass beam breakup and energy recovery using the CEBAF injector linac”~”CEBAF-TN-93-088”~”Nov”~”1993”~”Nicholas S. R. Sereno”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

554”~”Measurements of mechanical and thermal properties of niobium fabricated in China”~”CEBAF-TN-93-089”~”Nov”~”1993”~”Ganapati Rao, Lifang Wang, Kui Zhao, Peter Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

555”~”Production vertical cavity pair testing at CEBAF”~”CEBAF-TN-93-090”~”Nov”~”1993”~”C. Reece, T. Powers, J. Mammosser, P. Kushnick”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

556”~”Multipass beam position and profile measurement using photon target”~”CEBAF-TN-93-091”~”Nov”~”1993”~”I. Karabekov, G. Neil, S. Karabekian, V. Musakhanian”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

557”~”High power emittance and momentum spread measurements using endstation transport lines”~”CEBAF-TN-93-092”~”Nov”~”1993”~”D. R. Douglas, D. V. Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

558”~”CEBAF Q&E Analysis: A software module for SRF cavity testing in the CEBAF VTA”~”CEBAF-TN-93-093”~”Nov”~”1993”~”Charles E. Reece”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

559”~”The CCD camera as beam size synchrotron radiation monitor for CEBAF”~”CEBAF-TN-93-094”~”Nov”~”1993”~”I. Karabekov, G. Neil”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

560”~”Synchrotron radiation monitors on both ends of the linacs for observing all passes”~”CEBAF-TN-93-095”~”Dec”~”1993”~”R. Rossmanith, J. C. Denard”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

561”~”Heating problem of radiator for optical transition radiation proposed for CEBAF multipass beam viewer”~”CEBAF-TN-93-096”~”Nov”~”1993”~”I. Karabekov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

562”~”Transverse impedance of CEBAF linac”~”CEBAF-TN-93-097”~”Dec”~”1993”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

563”~”Report on investigation of corrosion leaks in CEBAF penetration pipes”~”CEBAF-TN-93-098”~”Oct”~”1993”~”Daniel P. Henkel”~”ACC”~”Report prepared in cooperation with NESB at NASA Langley Research Center.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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564”~”CEBAF experience with in-house production fabrication of niobium parts”~”CEBAF-TN-93-099”~”Dec”~”1993”~”J. Brawley, F. Folsom, S. Morgan, B. Jones, R. Bennett, C. Reece”~”ACC”~”Contribution to the Sixth Workshop on RF Superconductivity, CEBAF, October 1993.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

565”~”Feasibility of measuring 100 and 500 kV beam emittances using the 500 kV diagnostics line in the injector”~”CEBAF-TN-93-100”~”Dec”~”1993”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

566”~”Basic RF control system tutorial”~”CEBAF-TN-93-101”~”Dec”~”1993”~”George E. Lahti”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

567”~”The use of synchrotron light to monitor the beam current at CEBAF”~”CEBAF-TN-93-102”~”Dec”~”1993”~”Peter K. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

568”~”Analysis of Coherent Beam-Beam Dipole Instability in a Linac-on-Ring B Factory”~”CEBAF-TN-93-103”~”“~”1993”~”R. Li, G.A. Krafft, J. J. Bisognano”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

569”~”Absolute beam energy determination at CEBAF”~”CEBAF-TN-94-001”~”Jan”~”1994”~”P. E. Ulmer, I. Karabekov, A. Saha, P. Bertin, P. Vernin”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

570”~”A simulation of the Beijing free-electron laser using pulse propagation theory”~”CEBAF-TN-94-002”~”Jan”~”1994”~”Xiangyun Chang, Lingyi Zhang, Stephen V. Benson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

571”~”PLSPRPLP2 code and simulation of CEBAF UV free-electron laser”~”CEBAF-TN-94-003”~”Jan”~”1994”~”Lingyi Zhang, Xiangyun Chang, Stephen V. Benson”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

572”~”Comparison on CEBAF magnets position”~”CEBAF-TN-94-004”~”Jan”~”1994”~”Siyu Chen, D. R. Douglas, K. Tremblay”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

573”~”Investigation on chromatic correction for the first pass of the CEBAF beam transport system”~”CEBAF-TN-94-005”~”Jan”~”1994”~”Siyu Chen, D. R. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

574”~”A fix for egregious path length errors (with addendum)”~”CEBAF-TN-94-006”~”Jan”~”1994”~”D. Douglas”~”ACC”~”Includes addendum”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

575”~”Notes on the CEBAF beam transport system”~”CEBAF-TN-94-007”~”Jan”~”1994”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

576”~”Beam energy absolute measurement using K-edge absorption spectrometers”~”CEBAF-TN-94-008”~”Jan”~”1994”~”I. P. Karabekov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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577”~”Orbit correction in the BSY transport arc to End Station C”~”CEBAF-TN-94-009”~”Jan”~”1994”~”Rui Li, David Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

578”~”Injection conditions and BPM readings in CEBAF linacs for multipass beams”~”CEBAF-TN-94-010”~”Jan”~”1994”~”Rui Li”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

579”~”Optimization of bunch length using sensitivity matrix”~”CEBAF-TN-94-011”~”Jan”~”1994”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

580”~”RF bunching and focusing from the two SRF cavities in the cryounit”~”CEBAF-TN-94-012”~”Jan”~”1994”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

581”~”On optimizing the bunch length”~”CEBAF-TN-94-013”~”Jan”~”1994”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

582”~”A simplified calculation for harp sensor wire temperature rise”~”CEBAF-TN-94-014”~”Jan”~”1994”~”C. Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

583”~”High resolution short-orbit spectrometer -- a modified version of SOS”~”CEBAF-TN-94-015”~”Jan”~”1994”~”L. Tang, C. Yan”~”PHY”~”Poor quality copy, pages skewed.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

584”~”A new configuration of lattice for FEL two pass project”~”CEBAF-TN-94-016”~”Jan”~”1994”~”Siyu Chen, D. R. Douglas, Johannes van Zeijts”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

585”~”Magnetic shielding of capture overview”~”CEBAF-TN-94-017”~”Jan”~”1994”~”Quentin Saulter”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

586”~”Comments on a modified version of the Hall C Short-Orbit Spectrometer”~”CEBAF-TN-94-018”~”“~”1994”~”R. L. Boudrie, H. E. Jackson, D. H. Potterveld, B. Zeidman”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

587”~”A lattice design for a 200 MeV FEL driver linac”~”CEBAF-TN-94-019”~”Mar”~”1994”~”D. R. Douglas, Siyu Chen, Johannes van Zeijts”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

588”~”On point-by-point space charge model”~”CEBAF-TN-94-020”~”Mar”~”1994”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

589”~”A design study of buncher cavity for CEBAF FEL”~”CEBAF-TN-94-021”~”“~”1994”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

590”~”[Unused TN number]”~”CEBAF-TN-94-022”~”“~”1994”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

591”~”[Unused TN number]”~”CEBAF-TN-94-023”~”“~”1994”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

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592”~”Beam loss monitor performance requirements”~”CEBAF-TN-94-024”~”“~”1994”~”C. K. Sinclair”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

593”~”Emergency management exercise report: hazardous waste spill near the acid storage building”~”CEBAF-TN-94-025”~”Apr”~”1994”~”Tom Hassler”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

594”~”An energy diagnostic using the linac FODO lattice”~”CEBAF-TN-94-026”~”Apr”~”1994”~”D. Douglas, A. Hutton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

595”~”Test results of the Hamamatsu ultra compact R5600U photomultiplier tube”~”CEBAF-TN-94-027”~”Apr”~”1994”~”Drew Weisenberger”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

596”~”Additional RF-surface resistance in superconducting niobium cavities caused by trapped magnetic flux”~”CEBAF-TN-94-028”~”Apr”~”1994”~”P. Kneisel, B. Lewis”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

597”~”Response of CEBAF's cold RF-window to operation in FE-regime of a cavity”~”CEBAF-TN-94-029”~”Apr”~”1994”~”P. Kneisel, T. Powers”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

598”~”Attempt to correlate measured 60 Hz magnetic fields and down stream beam motion in the injector”~”CEBAF-TN-94-030”~”Apr”~”1994”~”R. Legg, Q. Saulter”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

599”~”Calculation of radioactivation yields in air from electron beam experiments in CEBAF end stations and the dose to the surrounding population (rev. B)”~”CEBAF-TN-94-031”~”APR”~”1994”~”R. May, S. Schwahn, G. Stapleton”~”ACC”~”Revision B.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

600”~”Improvement of the B0005 surface mount BPM electronics”~”CEBAF-TN-94-032”~”Apr”~”1994”~”Mark Crofford”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

601”~”Resolution of spectrometer mode tunings in CEBAF transport lines”~”CEBAF-TN-94-033”~”May”~”1994”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

602”~”Forward angle physics in Hall A”~”CEBAF-TN-94-034”~”“~”1994”~”P. Markowitz, C. C. Chang, E. Cisbani, S. Frullani, F. Garibaldi, M. Iodice, G. M. Urciuoli, J. LeRose, S. Nanda”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

603”~”Tuning of the capture quadrature chassis”~”CEBAF-TN-94-035”~”May”~”1994”~”Mark Crofford”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

604”~”Cryosorption pumping of H2 and He with metals and metal oxides at 4.3 K”~”CEBAF-TN-94-036”~”Jun”~”1994”~”M. G. Rao, P. Kneisel, J. Susta”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

605”~”A lattice design for an IR FEL driver”~”CEBAF-TN-94-037”~”“~”1994”~”D. Douglas, S. Chen, J. van Zeijts”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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606”~”High level application prototyping”~”CEBAF-TN-94-038”~”Jul”~”1994”~”Johannes van Zeijts”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

607”~”Review of earlier calculations on beam loss mechanisms in the end stations”~”CEBAF-TN-94-039”~”“~”1994”~”Bob May, Geoff Stapleton, Roy Whitney”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

608”~”Concept of variable particle size factor for a point-by-point space charge algorithm”~”CEBAF-TN-94-040”~”“~”1994”~”Hongxiu Liu”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

609”~”Model-based compensation of arc dispersion errors”~”CEBAF-TN-94-041”~”Aug”~”1994”~”D. Douglas, R. Legg”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

610”~”Numerical simulation of CEBAF 5 cell cavity”~”CEBAF-TN-94-042”~”AUG”~”1994”~”Joseph Bisognano, Liz Li”~”ACC”~”Missing from library and AccD files. Call Joe Bisognano.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

611”~”Beam dynamics in CEBAF 5 cell cavities”~”CEBAF-TN-94-043”~”AUG”~”1994”~”Joseph Bisognano, Liz Li”~”ACC”~”Missing from library and AccD files. Call Joe Bisognano.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

612”~”4th order finite difference algorithm for solving Maxwell's equations in time domain”~”CEBAF-TN-94-044”~”AUG”~”1994”~”Joseph Bisognano, Liz Li”~”ACC”~”Missing from library and AccD files. Call Joe Bisognano.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

613”~”T126, mis-steering, chromatic correction, and dispersion errors in the low energy east arc transport line”~”CEBAF-TN-94-045”~”AUG”~”1994”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

614”~”An algorithm for global compensation of arc dispersion errors”~”CEBAF-TN-94-046”~”Aug”~”1994”~”D. Douglas, R. Legg”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

615”~”A comparison of multi-pass linac optics using 60 degree and 120 degree FODO phase advances”~”CEBAF-TN-94-047”~”Aug”~”1994”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

616”~”Non-uniform cavity excitation and emittance degradation”~”CEBAF-TN-94-048”~”Aug”~”1994”~”D. R. Douglas, R. Legg, D. V. Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

617”~”Operation of the intermediate power beam dumps at high beam energies”~”CEBAF-TN-94-049”~”Aug”~”1994”~”C. K. Sinclair, R. J. Vetterlein”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

618”~”A possible incorporation of the MRS spectrometer or its modified high resolution version to the new AGS 1-2 GeV/c separated beam line for hypernuclear physics experiments at BNL”~”CEBAF-TN-94-050”~”Aug”~”1994”~”L. Tang, C. Yan, P. H. Pile, H. A. Thiessen”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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619”~”Superharp -- a wire scanner with absolute position readout for beam energy measurement at CEBAF”~”CEBAF-TN-94-051”~”Aug”~”1994”~”C. Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

620”~”Extensions of the longitudinal envelope equation”~”CEBAF-TN-94-052”~”SEP”~”1994”~”David Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

621”~”Injection chicanery”~”CEBAF-TN-94-053”~”OCT”~”1994”~”D. Douglas, J. Bisognano, I. Campisi, L. Harwood, J. Karn, G. A. Krafft, R. Legg, R. Li, C. Sinclair, B. Yunn, J. van Zeijts”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

622”~”RF commissioning of the chopper cavities”~”CEBAF-TN-94-054”~”Oct”~”1994”~”D. Wang, G. A. Krafft, R. Abbott”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

623”~”Longitudinal dynamics in the FEL recirculating linac with energy recovery”~”CEBAF-TN-94-055”~”OCT”~”1994”~”David Neuffer, David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

624”~”CEBAF transport system design lattice database”~”CEBAF-TN-94-056”~”NOV”~”1994”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

625”~”Applications of free electron lasers to metals and ceramics processing”~”CEBAF-TN-94-057”~”Nov”~”1994”~”Shanti V. Nair”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

626”~”Betatron matching conditions for emittance measurements”~”CEBAF-TN-94-058”~”NOV”~”1994”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

627”~”RF window arcing studies update: a comparison of results from cryomodule 17 and vertical cavity testing”~”CEBAF-TN-94-059”~”“~”1994”~”Tom Powers, Larry Phillips, Charles Reece, Peter Kneisel, Viet Nguyen”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

628”~”Finite-element calculation of burnthrough times for beam stoppers”~”CEBAF-TN-94-060”~”NOV”~”1994”~”P. K. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

629”~”Test plan for Hall C beamline commissioning”~”CEBAF-TN-94-061”~”NOV”~”1994”~”C. Yan, R. Li, D. Neuffer”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

630”~”Searching for an alternative operating point of the CEBAF injector”~”CEBAF-TN-94-062”~”DEC”~”1994”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

631”~”Electronic activity at CEBAF cold RF window induced by cavity operation”~”CEBAF-TN-94-063”~”DEC”~”1994”~”V. Nguyen-tuong, N. Luo, L. Phillips, C. Reece”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

632”~”Cold RF-window arcing initiated by electron loading -- more evidence”~”CEBAF-TN-94-064”~”DEC”~”1994”~”P. Kneisel, T. Powers, R. Allen, B. Lewis”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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633”~”Spreadsheet for calculating the performance of a free-electron laser”~”CEBAF-TN-94-065”~”DEC”~”1994”~”Stephen Benson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

634”~”Steering second pass beam with shunted magnets in spreader/recombiners”~”CEBAF-TN-94-066”~”DEC”~”1994”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

635”~”On the sensitivity of the CEBAF injector”~”CEBAF-TN-94-067”~”DEC”~”1994”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

636”~”Hall B liquid N2 spill test”~”CEBAF-TN-94-068”~”DEC”~”1994”~”C. H. Rode, R. Brazzale, W. C. Chronis, K. Mahoney, B. Murphy, J. O'Meara, H. Robertson, W. Tuzel, D. Wetherholt, R. Wines”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

637”~”Beam steering for reinjection”~”CEBAF-TN-94-069”~”“~”1994”~”D. Douglas, R. Legg”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

638”~” Teams in the workplace: a review of the literature”~”CEBAF-TN-95-001”~”Jan”~”1995”~”Tom Hassler”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

639”~”Linac back-end steering, multipass orbit correction, and the Earth's magnetic field”~”CEBAF-TN-95-002”~”Jan”~”1995”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

640”~”High charge injector test stand shielding requirements”~”CEBAF-TN-95-003”~”Feb”~”1995”~”Scott O. Schwahn”~”ACC”~”TN is dated 23 Feb. 95. Cover sheets for AccD copies are marked 'TN # 95-003 (Rev.).'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

641”~”A formula for magnetic bunching”~”CEBAF-TN-95-004”~”Jan”~”1995”~”H. Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

642”~”A safety synopsis of accelerator operations policies, procedures and safety practices”~”CEBAF-TN-95-005”~”Jan”~”1995”~”James R. Boyce”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

643”~”Predicting the thermal effects of electron beams on materials”~”CEBAF-TN-95-006”~”Jan”~”1995”~”Peter K. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

644”~”Power requirements for pulse peak power processing of CEBAF cavities”~”CEBAF-TN-95-007”~”Feb”~”1995”~”Isidoro E. Campisi”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

645”~”Measured results of magnetic shielding”~”CEBAF-TN-95-008”~”Feb”~”1995”~”Kurt Macha”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

646”~”[Unused TN number]”~”CEBAF-TN-95-009”~”“~”1995”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

647”~”[Unused TN number]”~”CEBAF-TN-95-010”~”“~”1995”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

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648”~”Recent advances in UHV techniques for particle accelerators”~”CEBAF-TN-95-011”~”Feb”~”1995”~”M. G. Rao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

649”~”Emergency management exercise report (on radiation overexposure in the beam switchyard)”~”CEBAF-TN-95-012”~”Mar”~”1995”~”Tom Hassler”~”ACC”~”Cover sheet lists variant title: 'Report of emergency management exercise: radiation overexposure in the beam switchyard.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

650”~”Reducing north linac betatron matching sensitivity to injector RF phasing errors”~”CEBAF-TN-95-013”~”Mar”~”1995”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

651”~”Results of magnet crosstalk tests performed Feb. 15, 1995”~”CEBAF-TN-95-014”~”Mar”~”1995”~”R. Legg, D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

652”~”Analytic modeling and lattice scaling relations for FEL driver accelerators”~”CEBAF-TN-95-015”~”“~”1995”~”D. Douglas, A. Hutton, C. Leemann, D. Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

653”~”HMS upgrade -- the third order correction”~”CEBAF-TN-95-016”~”Mar”~”1995”~”C. Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

654”~”Note on coherent synchrotron radiation in the CEBAF FEL”~”CEBAF-TN-95-017”~”Mar”~”1995”~”D. V. Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

655”~”Choice of wiggler for the photon processing consortium industrial demonstration free-electron laser”~”CEBAF-TN-95-018”~”Mar”~”1995”~”Stephen Benson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

656”~”RF cavity equations: steady-state”~”CEBAF-TN-95-019”~”“~”1995”~”Lia Merminga”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

657”~”[Unused TN number]”~”CEBAF-TN-95-020”~”“~”1995”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

658”~”Tuning of the CEBAF beam current monitors”~”CEBAF-TN-95-021”~”Apr”~”1995”~”Curt Hovater”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

659”~”Resonant ring and RF window testing”~”CEBAF-TN-95-022”~”Apr”~”1995”~”Viet Nguyen-tuong, Larry Phillips”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

660”~”Systematic resolution study of the CEBAF Hall C spectrometers -- HMS and SOS”~”CEBAF-TN-95-023”~”Apr”~”1995”~”L. Tang, C. Yan, Ed. V. Hungerford”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

661”~”The third order correction on HMS”~”CEBAF-TN-95-024”~”Apr”~”1995”~”C. Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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662”~”Correction of first and higher pass orbit offsets in the CEBAF linacs”~”CEBAF-TN-95-025”~”Apr”~”1995”~”D. Douglas, R. Dawes, B. Dunham, V. Lebedev, S. Manning, J. van Zeijts”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

663”~”Determination of shielding requirements for service building/tunnel penetrations”~”CEBAF-TN-95-026”~”May”~”1995”~”Scott O. Schwahn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

664”~”1994 safety inspection summary -- Accelerator Division”~”CEBAF-TN-95-027”~”“~”1995”~”Barry Moss”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

665”~”Description of the CEBAF Personnel Safety System (revision A)”~”CEBAF-TN-95-028”~”May”~”1995”~”Kelly Mahoney”~”ACC”~”TN is dated 8 May 1995. TN itself (not its standard TN cover sheet) says 'Revision A.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

666”~”Impingement of the beam on tunnel roof at spreader magnets”~”CEBAF-TN-95-029”~”May”~”1995”~”Pete Kloeppel, Bob May, Geoff Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

667”~”Beam dynamics in the CEBAF superconducting cavities”~”CEBAF-TN-95-030”~”May”~”1995”~”Zenghai Li”~”ACC”~”Dissertation abstract (full dissertation provided).”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

668”~”Calculation of axial space charge field at a photo-emission cathode surface”~”CEBAF-TN-95-031”~”May”~”1995”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

669”~”Performance experience with the CEBAF SRF cavities”~”CEBAF-TN-95-032”~”May”~”1995”~”C. Reece”~”ACC”~”Adapted from a PAC95 contribution.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

670”~”Diffraction limit of OTR monitor resolution”~”CEBAF-TN-95-033”~”May”~”1995”~”V. A. Lebedev”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

671”~”CEBAF beam loss accounting”~”CEBAF-TN-95-034”~”May”~”1995”~”R. Ursic, K. Mahoney, C. Hovater, A. Hutton, C. Sinclair”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

672”~”Decoupled correction of multi-pass orbits in the CEBAF linacs”~”CEBAF-TN-95-035”~”“~”1995”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

673”~”Proposed focal plane polarimeter for Hall C Short Orbit Spectrometer”~”CEBAF-TN-95-036”~”May”~”1995”~”S. Danagoulian, R. Carlini, C. Jackson”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

674”~”Effect and compensation of HOM-generated skew quadrupole fields in the CEBAF linacs”~”CEBAF-TN-95-037”~”Jun”~”1995”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

675”~”Code driven construction of MEDM screens”~”CEBAF-TN-95-038”~”“~”1995”~”Jeff Karn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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676”~”Emergency management exercise report: fire in Experimental Hall B”~”CEBAF-TN-95-039”~”Jun”~”1995”~”Tom Hassler”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

677”~”Master oscillator driveline temperature regulation system”~”CEBAF-TN-95-040”~”Jun”~”1995”~”Richard Abbott, Tony Lapolla”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

678”~”The feedback system for suppression of the beam displacements on the CEBAF targets”~”CEBAF-TN-95-041”~”Jun”~”1995”~”Valeri Lebedev”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

679”~”A simple arc steering method”~”CEBAF-TN-95-042”~”Jul”~”1995”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

680”~”Mapping the Test Lab waste streams”~”CEBAF-TN-95-043”~”Jul”~”1995”~”B. Moss”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

681”~”Shielding and other radiation safety requirements for the 200 MeV recirculating linac with energy recovery for the UV FEL”~”CEBAF-TN-95-044”~”Jul”~”1995”~”G. Neil, G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

682”~”High pulse power processing test on Phoenix”~”CEBAF-TN-95-045”~”Aug”~”1995”~”Isidoro E. Campisi”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

683”~”Energy improvements estimates with HPPPP on CEBAF installed cavities”~”CEBAF-TN-95-046”~”Aug”~”1995”~”Isidoro E. Campisi”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

684”~”Sensitive helium leak detection in cryogenic vacuum systems”~”CEBAF-TN-95-047”~”Aug”~”1995”~”M. G. Rao”~”ACC”~”Presented at CEC/ICMC, July 1995.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

685”~”Recovery from IOC crashes on the EPICS controls system at CEBAF”~”CEBAF-TN-95-048”~”Aug”~”1995”~”B. Dunham”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

686”~”Upgrade Hall C beam line optics for instantaneous beam energy measurements and beam transportation to Hall C target”~”CEBAF-TN-95-049”~”Aug”~”1995”~”C. Yan, R. Carlini, V. Lebedev, R. Li”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

687”~”A PC version of the DIMAD program”~”CEBAF-TN-95-050”~”Aug”~”1995”~”Eugene (Sonny) Green”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

688”~”Effect of utilizing a stepped aluminum cone from the scattering chamber to the beam dump tunnel aperture (rev. A)”~”CEBAF-TN-95-051”~”“~”1995”~”G. Stapleton”~”ACC”~”Revision A is dated 21 Nov. 96.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

689”~”User's manual for RF autotune”~”CEBAF-TN-95-052”~”Aug”~”1995”~”Mahesh Chowdhary”~”ACC”~”Copy in AccD files says 'Rev. August 15, 1995.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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690”~”Results of the high peak pulse power processing (HPPPP) in the CEBAF south linac”~”CEBAF-TN-95-053”~”Aug”~”1995”~”Isidoro E. Campisi”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

691”~”RF vacuum waveguide design for the injector test stand”~”CEBAF-TN-95-054”~”Aug”~”1995”~”Tom Schultheiss, Danny Machie, Mark Wiseman”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

692”~”Application of a running average algorithm to BCM data”~”CEBAF-TN-95-055”~”Aug”~”1995”~”Justin H. Holcomb”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

693”~”A test for anomalous heating of a warm window in a resonant ring”~”CEBAF-TN-95-056”~”Aug”~”1995”~”Viet Nguyen-tuong, John Fischer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

694”~”A tool for saving and restoring control system signals”~”CEBAF-TN-95-057”~”“~”1995”~”B. Dunham”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

695”~”The Hall C He-pipe for cryogenic targets: multiple scattering angle calculation”~”CEBAF-TN-95-058”~”Aug”~”1995”~”Paul Gueye, Chen Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

696”~”Analysis of cavity trips”~”CEBAF-TN-95-059”~”“~”1995”~”Jay Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

697”~”Standard PARMELA models and prototyping input files for the CEBAF injector”~”CEBAF-TN-95-060”~”Oct”~”1995”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

698”~”A note on emittance growth in bends”~”CEBAF-TN-95-061”~”“~”1995”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

699”~”A replaceable fork mechanism for wire scanner”~”CEBAF-TN-95-062”~”Aug”~”1995”~”Joe Van Dyke, Casey Apeldoorn, Dave McCay, Chen Yan”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

700”~”Analysis of solenoid field measurements for the FEL injector test stand”~”CEBAF-TN-95-063”~”Oct”~”1995”~”Hongxiu Liu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

701”~”Beam bending experiment transport system”~”CEBAF-TN-95-064”~”“~”1995”~”D. Douglas, R. Legg, R. Li, D. Neuffer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

702”~”OTR screens: what beam current can they stand?”~”CEBAF-TN-95-065”~”Nov”~”1995”~”J-C. Denard, P. Piot”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

703”~”Experimental study on the golden ratio of raster frequency and the resonance behavior of raster drivers”~”CEBAF-TN-95-066”~”Nov”~”1995”~”C. Yan, C. Cuevas, A. Angelov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

704”~”Corrector placement in the 500 keV FEL gun test stand”~”CEBAF-TN-95-067”~”Nov”~”1995”~”David Kehne”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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705”~”BSY-dump beam raster system”~”CEBAF-TN-95-068”~”Nov”~”1995”~”Ron Lauze'“~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

706”~”An improved injector setup with reduced transverse sensitivity to RF phase drifts”~”CEBAF-TN-95-069”~”“~”1995”~”B. Dunham, G. Krafft, D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

707”~”Thermal effects of low-power beams: 1. Beam pipe penetration”~”CEBAF-TN-95-070”~”Dec”~”1995”~”Peter K. Kloeppel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

708”~”Preliminary specifications for IR FEL driver accelerator”~”CEBAF-TN-95-071”~”Dec”~”1995”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

709”~”A study on survey techniques for superharps”~”CEBAF-TN-95-072”~”Dec”~”1995”~”B. Kross, J. Dahlberg, E. Feldl, W. Oren, C. Yan”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

710”~”Resolution limitations of optical transition radiation profile monitors”~”CEBAF-TN-95-073”~”Dec”~”1995”~”R. Legg, P. Adderley, B. Bowling, J-C. Denard, D. Wetherholt”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

711”~”Advanced surface cleaning methods -- three years of experience with high pressure ultrapure water rinsing of superconducting cavities”~”CEBAF-TN-95-074”~”Dec”~”1995”~”P. Kneisel, B. Lewis”~”ACC”~”Presented at the 7th Workshop on RF Superconductivity, Saclay, France.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

712”~”Effect of cavity vacuum on performance of superconducting niobium cavities”~”CEBAF-TN-95-075”~”Dec”~”1995”~”P. Kneisel”~”ACC”~”Presented at the 7th Workshop on RF Superconductivity, Saclay, France.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

713”~”Results from a nearly 'defect-free' niobium cavity”~”CEBAF-TN-95-076”~”Dec”~”1995”~”P. Kneisel, R. W. Roth, H.-G. Kurschner”~”ACC”~”Presented at the 7th Workshop on RF Superconductivity, Saclay, France.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

714”~”A non-invasive bunch length monitor for femto-second electron bunches”~”CEBAF-TN-95-077”~”Dec”~”1995”~”D. Wang, G. A. Krafft, E. Price, P. A. D. Wood, D. W. Porterfield, T. W. Crowe”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

715”~”A baseline design for an IR FEL driver accelerator”~”CEBAF-TN-95-078”~”Dec”~”1995”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

716”~”Quantifying fluctuations in the BPMs”~”CEBAF-TN-96-001”~”Jan”~”1996”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

717”~”Arcing phenomena on CEBAF RF-windows at cryogenic temperatures”~”CEBAF-TN-96-002”~”Jan”~”1996”~”Tom Powers, Peter Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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718”~”Impossibility of accelerator tunnel ceiling 'burnthrough'“~”CEBAF-TN-96-003”~”Jan”~”1996”~”C. K. Sinclair”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

719”~”Would a different LEM algorithm for determining GSET reduce faults?”~”CEBAF-TN-96-004”~”Jan”~”1996”~”Jay Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

720”~”Fast feedback corrector system”~”CEBAF-TN-96-005”~”Jan”~”1996”~”R. Legg, M. Chowdhary, J. Karn, W. Merz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

721”~”Sensitivity of heat-treated 5-cell niobium cavity to external pressure”~”CEBAF-TN-96-006”~”Jan”~”1996”~”R. Bennett, P. Kneisel, B. Lewis, G. Rao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

722”~”Oil spill in the End Station Refrigerator”~”CEBAF-TN-96-007”~”Jan”~”1996”~”Tom Hassler”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

723”~”Verification of commissioning quench limits (revised version)”~”CEBAF-TN-96-008”~”Jan”~”1996”~”Jay Benesch”~”ACC”~”Use the revision of 2 Apr. 96 to this TN of 6 Feb. 96.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

724”~”Fire in VARC and trailer city (emergency management exercise report)”~”CEBAF-TN-96-009”~”“~”1996”~”Tom Hassler”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

725”~”[Unused TN number]”~”CEBAF-TN-96-010”~”“~”1996”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

726”~”[Unused TN number]”~”CEBAF-TN-96-011”~”“~”1996”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

727”~”Compensation of dogleg dipole focussing”~”CEBAF-TN-96-012”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

728”~”Three simple but useful second order matrix transform relations”~”CEBAF-TN-96-013”~”“~”1996”~”D. Douglas, B. Bowling, Y. Chao, J. van Zeijts”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

729”~”Analysis of emittance measurements using single and multiple harps”~”CEBAF-TN-96-014”~”“~”1996”~”B. Dunham, D. Douglas, R. Legg, B. Bowling”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

730”~”CEBAF shield flow microphonics test”~”CEBAF-TN-96-015”~”“~”1996”~”Larry Doolittle, Mark Wiseman”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

731”~”Utilization of microcontrollers at CEBAF for intelligent control”~”CEBAF-TN-96-016”~”“~”1996”~”John Hansknecht”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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732”~”Flag pulse damping kicker system for Gen and other low average current experiments at CEBAF”~”CEBAF-TN-96-017”~”“~”1996”~”C. Yan”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

733”~”Effect of multipoles in the IR wiggler”~”CEBAF-TN-96-018”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

734”~”Beam transportation for Moller polarimeter”~”CEBAF-TN-96-019”~”“~”1996”~”C. Yan, V. Lebedev”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

735”~”Automated RF cresting at CEBAF”~”CEBAF-TN-96-020”~”“~”1996”~”M. G. Tiefenback, Kurt Brown”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

736”~”Design, commissioning and operational results of wide dynamic range BPM switched electrode electronics”~”CEBAF-TN-96-021”~”“~”1996”~”Tom Powers, Lawrence Doolittle, Rok Ursic, Jeffrey Wagner”~”“~”Paper presented at 1996 Beam Instrumentation Workshop at APS.”~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

737”~”High current CW beam profile monitors using transition radiation at CEBAF”~”CEBAF-TN-96-022_2”~”“~”1996”~”P. Piot, J.-C. Denard, P. Adderley, K. Capek, E. Feldl”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

738”~”On the optimization of Qext under heavy beam loading and in the presence of microphonics”~”CEBAF-TN-96-022”~”“~”1996”~”Lia Merminga, Jean R. Delayen”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

739”~”EH&S performance measure statistical analysis”~”CEBAF-TN-96-023”~”“~”1996”~”Ron Sundelin”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

740”~”The effect of hysteresis loop errors on beam transport system performance”~”CEBAF-TN-96-024”~”“~”1996”~”D. Douglas, R. Legg”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

741”~”Description of M56 hardware and software”~”CEBAF-TN-96-025”~”“~”1996”~”David Hardy, Mark Crofford, Geoffrey Krafft, Bob Legg”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

742”~”Engineering design specifications for IR FEL driver transport system”~”CEBAF-TN-96-026”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

743”~”Tests of a prototype of the CLAS combustion precursor sensing system”~”CEBAF-TN-96-027”~”“~”1996”~”Will Brooks”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

744”~”Design details of a high average power free-electron laser resonator”~”CEBAF-TN-96-028”~”“~”1996”~”Stephen Benson”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

745”~”On achieving optical resonator alignment and length tolerances in the TJNAF IR Demo Free-Electron Laser”~”CEBAF-TN-96-029”~”“~”1996”~”Stephen Benson”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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746”~”Laser safety calculations for the IR Demo”~”CEBAF-TN-96-030”~”“~”1996”~”Stephen Benson”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

747”~”Design considerations for the IR FEL upgrade”~”CEBAF-TN-96-031”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

748”~”Accelerator setups which provide longitudinal beam polarization to more than one experimental hall simultaneously”~”CEBAF-TN-96-032”~”“~”1996”~”C. K. Sinclair”~”“~”See abstract for TN-97-021.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

749”~”A synchrotron light energy spread monitor at Jefferson Lab”~”CEBAF-TN-96-033”~”“~”1996”~”M. G. Tiefenback, Philippe Piot”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

750”~”Longitudinal beam dynamics of IRFEL”~”CEBAF-TN-96-034”~”“~”1996”~”Byung C. Yunn”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

751”~”Error estimates for the IR FEL transport system”~”CEBAF-TN-96-035”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

752”~”50 kW beam dump design for the 10 MeV injector test stand experiment”~”CEBAF-TN-96-036”~”“~”1996”~”L. A. Dillon-Townes”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

753”~”A comparison of a spreadsheet model for a free-electron laser with three-dimensional simulations”~”CEBAF-TN-96-037”~”“~”1996”~”Stephen Benson”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

754”~”Quadrupole dynamic range in the IR FEL driver”~”CEBAF-TN-96-038”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

755”~”10 MeV diagnostic dump transport design”~”CEBAF-TN-96-039”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

756”~”Energy-recovery dump transport design”~”CEBAF-TN-96-040”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

757”~”Impedances in FEL chicane region”~”CEBAF-TN-96-041”~”“~”1996”~”Byung C. Yunn”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

758”~”Calibration of bunch lengthening in the polarized source using the longitudinal envelope equation”~”CEBAF-TN-96-042”~”“~”1996”~”B. Dunham”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

759”~”[Unused TN number]”~”CEBAF-TN-96-043”~”“~”1996”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

760”~”[Unused TN number]”~”CEBAF-TN-96-044”~”“~”1996”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

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761”~”[Unused TN number]”~”CEBAF-TN-96-045”~”“~”1996”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

762”~”[Unused TN number]”~”CEBAF-TN-96-046”~”“~”1996”~”[Unused TN number]”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

763”~”Nb field emission research review and the studies on broad area Nb surface using SEM and EDX”~”CEBAF-TN-96-047”~”“~”1996”~”Tong Wang”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

764”~”Final (hopefully!) energy recovery dump transport design”~”CEBAF-TN-96-048”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

765”~”Impedances of IR-FEL”~”CEBAF-TN-96-049”~”“~”1996”~”Byung C. Yunn”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

766”~”IR FEL driver accelerator design”~”CEBAF-TN-96-050”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

767”~”Effects of space charge on emittance growth of the polarized beams”~”CEBAF-TN-96-051”~”“~”1996”~”H. Liu”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

768”~”Evaluation of low cost RGA's for UHV applications”~”CEBAF-TN-96-052”~”“~”1996”~”M. G. Rao, C. Dong”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

769”~”Operational experience with the CEBAF control system”~”CEBAF-TN-96-053”~”“~”1996”~”C. Hovater, M. Chowdhary, J. Karn, M. Tiefenback, J. van Zeijts, W. Watson”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

770”~”The CEBAF RF separator system”~”CEBAF-TN-96-054”~”“~”1996”~”C. Hovater, G. Arnold, J. Fugitt, L. Harwood, R. Kazimi, G. Lahti, J. Mammosser, R. Nelson, C. Piller, L. Turlington”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

771”~”Simulation of alignment and powering errors in the IR FEL driver beam transport system”~”CEBAF-TN-96-055”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

772”~”Beam transport to the 'first light' dump”~”CEBAF-TN-96-056”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

773”~”GraphVue: a graphics routine for collecting and viewing data”~”CEBAF-TN-96-057”~”“~”1996”~”B. Gold, B. Dunham”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

774”~”Measuring profiles of beams with extremely low average current”~”CEBAF-TN-96-058”~”“~”1996”~”B. Dunham, D. Engwall, A. Hofler, M. Keesee, R. Legg”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

775”~”Specifications for IR FEL driver dipole strings”~”CEBAF-TN-96-059”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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776”~”Helium plus rf processing of NL03”~”CEBAF-TN-96-060”~”“~”1996”~”Charles Reece”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

777”~”The calculation of neutron skyshine dose rates at the TJNAF fence line”~”CEBAF-TN-96-061”~”“~”1996”~”G. Stapleton”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

778”~”Steps to bake out the IR-FEL gun”~”CEBAF-TN-96-062”~”“~”1996”~”R. Legg, B. Dunham, D. Engwall, T. Siggins”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

779”~”Configuration control using the EPICS alarm handler”~”CEBAF-TN-96-063”~”“~”1996”~”B. Dunham, S. Higgins”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

780”~”Overview of the Jefferson Lab IR FEL Program”~”CEBAF-TN-96-064”~”“~”1996”~”S. Benson”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

781”~”Some comments on providing broadband light to users”~”CEBAF-TN-96-065”~”“~”1996”~”S. Benson”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

782”~”Comments on driver dipole good fields”~”CEBAF-TN-96-066”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

783”~”Recommended modifications on the current 100 kV beamline of the injector based on computer simulations”~”CEBAF-TN-96-067”~”“~”1996”~”H. Liu, B. Dunham”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

784”~”Specification of the 'frozen' IR FEL transport system”~”CEBAF-TN-96-068”~”“~”1996”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

785”~”Rough answers to simple questions via the beam current monitor logs”~”CEBAF-TN-96-069”~”“~”1996”~”Jay Benesch”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

786”~”Analysis of data for distinguishing window losses from cavity losses”~”CEBAF-TN-96-070”~”“~”1996”~”R. Sundelin”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

787”~”A new nominal setting for the FEL injector”~”CEBAF-TN-96-071”~”“~”1996”~”H. Liu, B. Yunn”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

788”~”IRFEL startup procedure”~”CEBAF-TN-96-072”~”“~”1996”~”Stephen Benson”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

789”~”Results of life tests with 250 keV photocathode”~”JLab-TN-97-001”~”“~”1997”~”R. Legg, C. L. Bohn, D. Engwall, C. K. Sinclair”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

790”~”An alternative operating point for the FEL injector”~”JLab-TN-97-002”~”“~”1997”~”H. Liu”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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791”~”Qualification of 'spare' cavities for FEL use”~”JLab-TN-97-003”~”“~”1997”~”P. Kneisel”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

792”~”Hall C raster system -- the second generation”~”JLab-TN-97-004”~”“~”1997”~”C. Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

793”~”Heat induced mirror distortions in the IR Demo Free-Electron Laser resonator”~”JLab-TN-97-005”~”“~”1997”~”Stephen Benson, Paul Davidson, Peter Kloeppel, George Neil, Michelle Shinn”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

794”~”Bunch length and longitudinal emittance measurements for the 350 keV test stand”~”JLab-TN-97-006”~”“~”1997”~”D. Kehne, B. Legg”~”ACC”~”Dated 24 Sept. 97 and marked 'draft.'“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

795”~”Evaluation of gate valves for FEL application”~”JLab-TN-97-007”~”“~”1997”~”P. Kneisel, B. Lewis”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

796”~”Estimates of the probability of achieving various gradients in the APT”~”JLab-TN-97-008”~”“~”1997”~”Ron Sundelin, Peter Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

797”~”Compact system for measurement of the absolute energy of the CEBAF electron beam”~”JLab-TN-97-009”~”“~”1997”~”V. A. Lebedev, B. B. Wojtsekhowski”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

798”~”CUE-accessible DIMAD versions”~”JLab-TN-97-010”~”“~”1997”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

799”~”Phoenix cryomodule post operations testing results or some results from the Phoenix retest”~”JLab-TN-97-011”~”“~”1997”~”I. E. Campisi, M. Drury, P. Kneisel, J. Mammosser, T. Powers, J. Preble”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

800”~”A guide to the FEL driver e-beam optics design Web site”~”JLab-TN-97-012”~”“~”1997”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

801”~”A high power/current SRF cryomodule for the upgrade IRFEL injector & a performance summary of SRF cavities”~”JLab-TN-97-013”~”“~”1997”~”Quan-Sheng Shu”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

802”~”Emergency management exercise report: fire in acid and chemical storage buildings”~”JLab-TN-97-014”~”“~”1997”~”Tom Hassler”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

803”~”FEL driver trim magnet field specifications”~”JLab-TN-97-015”~”“~”1997”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

804”~”Specified gradients for cavities in the APT”~”JLab-TN-97-016”~”“~”1997”~”R. Sundelin”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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805”~”Occupational and environment aspects of the radiation control provisions at the Jefferson Lab”~”JLab-TN-97-017”~”“~”1997”~”P. Degtiarenko, R. May, S. Schwahn, G. Stapleton”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

806”~”Measurement of CSR-driven emittance growth in the Jefferson Lab IR-FEL driver”~”JLab-TN-97-018”~”“~”1997”~”D. Douglas, J. Bisognano, C. Bohn, B. Bowling, B. Dunham, G. Krafft, R. Legg, R. Li”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

807”~”Dipole field inhomogeneities and the 'Yunn Effect'“~”JLab-TN-97-019”~”“~”1997”~”D. Douglas, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

808”~”Measurements of emittance growth through the achromatic bend at the BNL Accelerator Test Facility”~”JLab-TN-97-020”~”“~”1997”~”D. Kehne, X. J. Wang”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

809”~”Beam energy combinations which provide simultaneous longitudinal electron polarization in two experimental halls”~”JLab-TN-97-021”~”“~”1997”~”C. K. Sinclair”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

810”~”Two-phase bunching on the CEBAF injector”~”JLab-TN-97-022”~”“~”1997”~”H. Liu”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

811”~”How to reliably run orbit locks with more than 2 BPM's”~”JLab-TN-97-023”~”“~”1997”~”Y. Chao”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

812”~”Recent difficulty pumping down the linacs and successful pumpdown 7/12/97”~”JLab-TN-97-024”~”“~”1997”~”David Kashy”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

813”~”Cold compressor tune optimization”~”JLab-TN-97-025”~”“~”1997”~”David Kashy”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

814”~”Online determination of settings for delivering longitudinal electron polarization to one or two experimental halls”~”JLab-TN-97-026”~”“~”1997”~”G. Holden, B. Dunham”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

815”~”Superconducting radio-frequency technology: understanding and improvements of limitations through application of cryogenic instrumentation”~”JLab-TN-97-027”~”“~”1997”~”P. Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

816”~”Investigation of BURLE 8854 photomultiplier tube”~”JLab-TN-97-028”~”“~”1997”~”M. Shepherd, A. Pope”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

817”~”Simple benchmark exercise for photon transport MC codes”~”JLab-TN-97-029”~”“~”1997”~”Pavel Degtiarenko, Scott Schwahn, Geoff Stapleton”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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818”~”Monitoring longitudinal phase space of a charged-particle beam with a multifrequency coherent radiation device”~”JLab-TN-97-030”~”“~”1997”~”P. Piot, G. A. Krafft”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

819”~”ELEC5b-Excel: a new tool for radiation budget calculations”~”JLab-TN-97-031”~”“~”1997”~”P. Degtyarenko (Degtiarenko), R. Royenko, G. Stapleton”~”“~”First author's name is spelled Degtiarenko elsewhere.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

820”~”Multipass beam breakup in microtrons: application to IASA microtron”~”JLab-TN-97-032”~”“~”1997”~”Lia Merminga, Byung C. Yunn”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

821”~”Aluminum vacuum chamber & copper magnet winding tubes”~”JLab-TN-97-033”~”“~”1997”~”Daniel P. Henkel”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

822”~”IR-FEL driver magnet performance integration plan”~”JLab-TN-97-034”~”“~”1997”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

823”~”End-field specifications for IR FEL driver dipoles”~”JLab-TN-97-035”~”“~”1997”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

824”~”Hall C chicane beam line for Gen 98”~”JLab-TN-97-036”~”“~”1997”~”Chen Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

825”~”Steering the electron beam in the vicinity of the wiggler”~”JLab-TN-97-037”~”“~”1997”~”D. Douglas, S. Benson”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

826”~”Quantum excitation estimates for CEBAF energy upgrades”~”JLab-TN-97-038”~”“~”1997”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

827”~”Energy stability and light power stability in recirculating, energy-recovering linac in presence of an FEL”~”JLab-TN-97-039”~”“~”1997”~”Alexander Bolshakov”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

828”~”Matching solutions for various wiggler operating configurations”~”JLab-TN-97-040”~”“~”1997”~”D. Douglas”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

829”~”A user station for the FEL beam dump”~”JLab-TN-97-041”~”“~”1997”~”James R. Boyce, Hari Areti”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

830”~”Absolute calibration of the central momentum of the Hadron HRS”~”JLab-TN-97-042”~”“~”1997”~”John J. LeRose”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

831”~”Large applications and challenges of state-of-the-art superconducting RF (SRF) technologies”~”JLab-TN-97-043”~”“~”1997”~”Quan-Sheng Shu”~”“~”Invited oral presentation at CEC/ICMC-97, Portland, Oregon, July 28-August 1, 1997.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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832”~”Superconducting RF cavities and magnets for a 4-TeV energy muon collider”~”JLab-TN-97-044”~”“~”1997”~”Quan-Sheng Shu”~”“~”Invited oral presentation at CEC/ICMC-97, Portland, Oregon, July 28-August 1, 1997.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

833”~”Optical modeling of the Jefferson Laboratory IR Demo FEL”~”JLab-TN-97-045”~”“~”1997”~”Stephen V. Benson, Paul S. Davidson, Ravi Jain, Peter K. Kloeppel, George R. Neil, Michelle D. Shinn”~”ACC”~”Presented at FEL97 in Beijing, and to appear in Nuclear Instrum. Methods A.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

834”~”Real-time transverse emittance monitor”~”JLab-TN-97-046”~”“~”1997”~”Jinhu Song”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

835”~”An alternate paradigm for high-level application development”~”JLab-TN-97-047”~”“~”1997”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

836”~”Shielded transient self-interaction of a bunch entering a circle from a straight path”~”JLab-TN-97-048”~”“~”1997”~”R. Li, C. L. Bohn, J. J. Bisognano”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

837”~”Operating experience with superconducting cavities at Jefferson Lab”~”JLab-TN-97-049”~”“~”1997”~”C. E. Reece”~”ACC”~”Invited contribution, Eighth Workshop on RF Superconductivity, Abano Terme, Italy, 6-10 October 1997.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

838”~”A selection of higher gradient cavity experiments”~”JLab-TN-98-001”~”“~”1998”~”P. Kneisel”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

839”~”Results from some temperature mapping experiments on Nb3Sn RF cavities”~”JLab-TN-98-002”~”“~”1998”~”P. Boccard, P. Kneisel, G. Muller, J. Pouryamout, H. Piel”~”“~”“~”1”~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

840”~”Performance of 1300 MHz KEK-type single cell niobium cavities”~”JLab-TN-98-003”~”“~”1998”~”P. Kneisel, K. Saito, R. Parodi”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

841”~”Field quality specification for IR FEL driver sextupoles”~”JLab-TN-98-004”~”“~”1998”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

842”~”Magnetostrictive tuner requirements for the IR and UV FEL cavities”~”JLab-TN-98-005”~”“~”1998”~”Lia Merminga”~”ACC”~”“~”“~”“~”1”~”1”~”“~”1”~”“~”“~”“~”“~”1

843”~”Effect of p-terphenyl coating to the quantum efficiency of Burle 8854 photomultiplier tubes”~”JLab-TN-98-006”~”“~”1998”~”Sue Duncan, Michael Kuss, Rob van der Meer, Bogdan Wojtsekhowski”~”“~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

844”~”Hall A cryogenic and dummy targets information”~”JLab-TN-98-007”~”“~”1998”~”Riad Suleiman”~”“~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

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845”~”A SUPERCEBAF scenario providing an incremental upgrade path from 12 to 24 GeV”~”JLab-TN-98-008”~”“~”1998”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

846”~”CEBAF full power demonstration test, September 16, 1997”~”JLab-TN-98-009”~”“~”1998”~”C. Reece, J. Bisognano, J-C. Denard, L. Doolittle, B. Dunham, S. Schwahn, M. Spata, M. Wiseman”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

847”~”Chicane raster system provides truly parallel beam for parity and other experiments”~”JLab-TN-98-010”~”“~”1998”~”Chen Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”1”~”“~”“~”“~”“~”1

848”~”Higher-order-mode spectra in the FEL cavities”~”JLab-TN-98-011”~”“~”1998”~”I.E. Campisi, Lia Merminga”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”1”~”“~”“~”1

849”~”Suppression and enhancement of CSR-driven emittance degradation in the IR-FEL driver”~”JLab-TN-98-012”~”“~”1998”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

850”~”A new collection mirror for synchrotron light”~”JLab-TN-98-013”~”“~”1998”~”G. Neil, L. Merminga”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

851”~”A non-destructive beam profile monitor for the Hall C Beam Line”~”JLab-TN-98-014”~”“~”1998”~”S. Danagoulian, R. Sawafta, S. Beedoe, C. Yan, R. Carlini”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”1”~”“~”“~”“~”1

852”~”Focusing effects due to mirror heating in the IR demo optical resonator”~”JLab-TN-98-015”~”“~”1998”~”S. Benson, M. Shinn”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

853”~”Report on box power supply susceptibility to line transients”~”JLab-TN-98-016”~”“~”1998”~”W. Merz”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”1”~”“~”“~”1

854”~”Fundamental power coupler waveguide RF processing”~”JLab-TN-98-017”~”“~”1998”~”V. Nguyen”~”“~”“~”1”~”1”~”1”~”“~”“~”“~”“~”1”~”“~”“~”1

855”~”Magnet specification sheet: explanation of entries”~”JLab-TN-98-018”~”“~”1998”~”Al Guerra”~”ACC”~”Electronic text requested from author”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

856”~”Results from the first seven-cell cavity for the CEBAF upgrade”~”JLab-TN-98-019”~”“~”1998”~”Peter Kneisel, John Brawley, Larry Turlington”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”1”~”“~”“~”1

857”~”To accelerate a 350 keV bunch through a CEBAF cryounit”~”JLab-TN-98-020”~”“~”1998”~”Byung Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

858”~”Accelerator-FEL interaction in recirculating, energy-recovering linacs with an FEL-numerical model”~”JLab-TN-98-021”~”“~”1998”~”Petr Alexeev”~”ACC”~”“~”“~”“~”1”~”1”~”“~”1”~”“~”“~”http://recycle.jlab.org/laser/”~”“~”1

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859”~”Alignment tolerance for 7-cell SRF cavity”~”JLab-TN-98-022”~”“~”1998”~”D. Douglas, J. Preble”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

860”~”Some frequency measurements on the 7-cell niobium cavity”~”JLab-TN-98-023”~”“~”1998”~”P. Kneisel, I. Campisi”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

861”~”A design study of the Jefferson Lab FEL injector”~”JLab-TN-98-024”~”“~”1998”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

862”~”Lattice issues affecting longitudinal phase space management during energy recovery, or, Why the FEL needs sextupoles”~”JLab-TN-98-025”~”“~”1998”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

863”~”Hall C beam energy correction: hysteresis with different current limits and beam energy monitoring by the Hall C ARC spectrometer”~”JLab-TN-98-026”~”“~”1998”~”Paul Gueye, Samuel Danagoulian, Ken Law, Chen Yan”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”1”~”“~”“~”“~”1

864”~”Finding the average number of photoelectrons in an ADC charge spectrum”~”JLab-TN-98-027”~”“~”1998”~”Jim McCann”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

865”~”Knock-on of delta-electron in Hall A electron arm”~”JLab-TN-98-028”~”“~”1998”~”Alexandre Deur”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

866”~”Bunch length measurement with back-phasing technique for non-emittance-dominated beam with significant intrinsic energy spread”~”JLab-TN-98-029”~”“~”1998”~”P.Piot, G.A. Krafft”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

867”~”Fringe fields in the beam pipe”~”JLab-TN-98-030”~”“~”1998”~”Larry Doolittle”~”ACC”~”“~”“~”“~”1”~”1”~”“~”1”~”“~”“~”“~”“~”1

868”~”Beam breakup simulations in the Jefferson Lab free-electron laser”~”JLab-TN-98-031”~”“~”1998”~”L. Merminga, I Campisi”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

869”~”Magnetic Measurement of a common arc dipole for energy upgrade considerations”~”JLab-TN-98-032”~”“~”1998”~”J. Karn, A. Guerra, L. Harwood, and E. Martin”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

870”~”Aerogel cherenkov counter calibration using cosmic rays”~”JLab-TN-98-033”~”“~”1998”~”J. McCann, L. Taub, B. Wojtsekowski”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

871”~”Analysis and design of waveguide filters based on H-plane space steps”~”JLab-TN-98-034”~”“~”1998”~”Larry Doolittle”~”ACC”~”“~”“~”“~”“~” “~”“~”“~”“~”“~”“~”“~”1

872”~”How to use trim quads to modify dispersion”~”JLab-TN-98-035”~”“~”1998”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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873”~”Short-pulse synchrotron light from the nuclear physics accelerator”~”JLab-TN-98-036”~”“~”1998”~”Geoffrey Krafft”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”1”~”“~”“~”1

874”~”1998 Fire exercise in Hall B”~”JLab-TN-98-037”~”“~”1998”~”Tom Hassler”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

875”~”Proposal for a carbon fiber grid monitor in the end station Hall C at Jefferson Lab”~”JLab-TN-98-038”~”“~”1998”~”P. Gueye, K.A. Assamagan, J. Beaufait, P. Brindza, D. Brock, R. Carlini, C. Cuevas, C. Curtis, S. Christo, J. Dahlberg, C. Doolittle, R. Ent, M. Garbus, A. Gavalya, N. Green, W. Gunning, S. Hardisty, S. Hickson, P. Hood, L. King, A. LeCogui, T. Mack, J. Mitchell, R. Schwartz, J. Takacs, W. TAylor, D. Varnell, P. Vernin, W. Vulcan, R. Wallace, S. Wood, C. Yan”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”1”~”“~”“~”“~”1

876”~”Polarimeter for high energy photons”~”JLab-TN-98-039”~”“~”1998”~”B. Wojtsekhowski”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

877”~”Incoherent thoughts about coherent light sources”~”JLab-TN-98-040”~”“~”1998”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

878”~”Lorentz-force tuning effects in CEBAF”~”JLab-TN-98-041”~”“~”1998”~”C. Reece”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

879”~”Effects of misaligning driver trim quads and sextupoles”~”JLab-TN-98-042”~”“~”1998”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

880”~”The super HMS”~”JLab-TN-98-043”~”“~”1998”~”Chen Yan”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

881”~”High gradient superconducting niobium cavities: A review of the present status”~”JLab-TN-98-044”~”“~”1998”~”P. Kneisel”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”1”~”“~”“~”1

882”~”The statistical analysis of cavity RF faults”~”JLab-TN-98-045”~”“~”1998”~”J. Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

883”~”Temperature analysis for the Hall A cryotarget”~”JLab-TN-98-046”~”“~”1998”~”Alexandre Deur”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

884”~”Longitudinal emittance in the wiggler vicinity”~”JLab-TN-98-047”~”“~”1998”~”P. Piot”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

885”~”Ultra-high vacuum instrumentation development studies”~”JLab-TN-98-048”~”“~”1998”~”Chankun Dong and G. Rao Myneni”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

886”~”The NMR system of the Hall A polarized helium-3 target”~”JLab-TN-98-049”~”“~”1998”~”Sebastien Incerti”~”PHY”~”Postscript file size is approximately 63Mb”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

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887”~”Testing the shape and the radius of curvature of the cavity mirrors for the IR-Demo FEL”~”JLab-TN-99-001”~”“~”1999”~”D. Oepts”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”1”~”“~”“~”1

888”~”Modeling of longitudinal phase space dynamics in energy-recovering FEL drivers”~”JLab-TN-99-002”~”“~”1999”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”http://enterprise.jlab.org/tn/1999/99-001x.html~~1”~”“~”

889”~”Bunch length measurement using coherent transition radiation in the FEL”~”Jlab-TN-99-003”~”“~”1999”~”P. Piot, G.A. Krafft, A. Grippo, K. Jordan, U. Happek, M, James”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

890”~”Initial results experimentally simulating detection of IR-FEL x-rays”~”Jlab-TN-99-004”~”“~”1999”~”J. Boyce, G.A. Krafft”~”ACC”~”Electronic text requested from author”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

891”~”12-24 GeV Hall D beam line”~”Jlab-TN-99-005”~”“~”1999”~”C. Yan, R. Carlini”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

892”~”Orbit shift: Analysis and modeling of BSY-ARC transport line optics in absolute beam energy measurement at Hall C”~”Jlab-TN-99-006”~”“~”1999”~”C. Yan”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

893”~”Beam transport issues in the Fall/Winter 1998 FEL run”~”Jlab-TN-99-007”~”“~”1999”~”D. Douglas, G. Biallas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

894”~”Beam transport issues in the Winter/Spring 1999 FEL run”~”Jlab-TN-99-008”~”“~”1999”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

895”~”Analysis of the possible beam energy and light power instabilities in recirculating energy-recovering linacs in the presence of an FEL”~”Jlab-TN-99-009”~”“~”1999”~”A. Bolshakov”~”ACC”~”Contact <a href=mailto:[email protected]>Lia Merminga</a> with questions about this TN.”~”“~”“~”1”~”1”~”“~”1”~”“~”1”~”“~”“~”1

896”~”Alternative FEL injector set up”~”JLab-TN-99-010”~”“~”1999”~”Byung C. Yunn”~”ACC”~”“~”1”~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

897”~”Analysis of burst mode cavity tuning data”~”JLab-TN-99-011”~”“~”1999”~”Lawrence R. Doolittle”~”ACC”~”“~”“~”“~”1”~”1”~”“~”1”~”“~”1”~”http://recycle.jlab.org/%7Eldoolitt/burst_new/”~”“~”1

898”~”Waveguide surface currents”~”JLab-TN-99-012”~”“~”1999”~”Lawrence R. Doolittle”~”ACC”~”“~”“~”“~”1”~”1”~”“~”1”~”“~”1”~”http://recycle.jlab.org/%7Eldoolitt/wgloss/”~”“~”1

899”~”Transverse cavity deflections”~”JLab-TN-99-013”~”“~”1999”~”Lawrence R. Doolittle”~”ACC”~”“~”“~”“~”1”~”1”~”“~”1”~”“~”1”~”http://recycle.jlab.org/%7Eldoolitt/transvib/”~”“~”1

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900”~”Hall A controls hardware configuration for EPICS”~”JLab-TN-99-014”~”“~”1999”~”J. Gomez”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

901”~”A pneumatically driven wire scanner”~”JLab-TN-99-015”~”“~”1999”~”C. Yan, B. Kross, J. Van Dyke, R. Wojcik”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

902”~”Finite Element Modeling of Permeability Differences in CEBAF Dipoles”~”JLab-TN-99-016”~”“~”1999”~”J. Karn, R. Wines”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

903”~”Optimizing the bunching process in the FEL Photo Injector “~”JLab-TN-99-017”~”“~”1999”~”P.Piot, G.A. Krafft”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

904”~”RF Requirements for the IRFEL upgrade project”~”JLab-TN-99-018”~”“~”1999”~”L. Merminga”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

905”~”A driver accelerator for an FEL upgrade”~”Jlab-TN-99-019”~”“~”1999”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

906”~”FEL Upgrade Scenarios”~”Jlab-TN-99-020”~”“~”1999”~”D. Douglas, S. Benson, C. Bohn, J. Boyce, F. Dylla, K. Jordan. L. Merminga, M. Shinn, G. Neil, R. Walter”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

907”~”Approaches to Mirror Figure Control Under High Head Load”~”JLab-TN-99-021”~”“~”1999”~”G. Neil”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

908”~”Magnetic Measurements of the Injector Spectrometer Dipole”~”JLab-TN-99-022”~”“~”1999”~”T. Hiatt, J. Karn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

909”~”Detection preparation of IR FEL Thomson scattered radiation (X rays)”~”Jlab-TN-99-023”~”“~”1999”~”Philip Folck, J.P. Boyce”~”ACC”~”Electonic file not available”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

910”~”Preparation for coronary stent irradiation”~”Jlab-TN-99-024”~”“~”1999”~”A. Marek Plucinski, J.R. Boyce, G.A. Krafft”~”ACC”~”Electonic file not available”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

911”~”Study of Optical Transmission of HMS in different tuning Modes for Experimental design of Gen and GMn”~”JLab-TN-99-025”~”“~”1999”~”C. Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

912”~”The Effect of Baking on the Light Transmission and Weight of Silica Aerogel”~”JLab-TN-99-026”~”“~”1999”~”A. White”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

913”~”Finite Element Stress Analysis of the CEBAF Accelerator Upgraded Superconducting Cavities”~”JLab-TN-99-027”~”“~”1999”~”T. Hiatt”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

914”~”1998 Cryomodule HELIUM VESSEL DESIGN CRITERIA AND CALCULATIONS”~”JLab-TN-99-028”~”“~”1999”~”J. Hogan”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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915”~”Survey Summary Report”~”JLab-TN-99-029”~”“~”1999”~”M. Liang”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

916”~”Normal Mode Analysis of the CEBAF Accelerator Upgraded Superconducting Cavities”~”JLab-TN-99-030”~”“~”1999”~”T. Hiatt”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

917”~”A tcl/TK based package for collecting and analyzing beam density from OTR in the IRFEL”~”Jlab-TN-99-031”~”“~”1999”~”P. Piot”~”ACC”~”Electonic file not available”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

918”~”ESPACE coordinates and basic variables: Definitions”~”JLab-TN-99-032”~”“~”1999”~”M. Liang, O. Hansen, M. Kuss, J. LeRose, N. Liyanage”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

919”~”K+<sup>O</sup> photoproduction”~”Jlab-TN-99-033”~”“~”1999”~”L. Morand”~”PHY”~”Electonic file not available”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

920”~”Shunt limits as a function of energy increase”~”Jlab-TN-99-034”~”“~”1999”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

921”~”Four-beam separation and extraction scheme for CEBAF 12 GeV upgrade”~”Jlab-TN-99-035”~”“~”1999”~”Yu-Chiu Chao”~”ACC”~”Electonic file not available”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

922”~”Study of optimized multiple pass linac beam profile and matching to spreader and recombiners”~”Jlab-TN-99-036”~”“~”1999”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

923”~”A transport arc design with minimize synchrotron radiation induced emittance growth”~”Jlab-TN-99-037”~”“~”1999”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

924”~”DAQ Dead Time Study for E93050, run 1498”~”JLab-TN-99-038”~”“~”1999”~”M. Liang”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

925”~”SASE Operation of the Jefferson Lab FEL”~”JLab-TN-99-039”~”“~”1999”~”G. Neil”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

926”~”A 75% solution for the fel upgrade”~”Jlab-TN-99-040”~”“~”1999”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

927”~”IR UV FEL upgrade project ACC PHYS plan”~”Jlab-TN-99-041”~”“~”1999”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

928”~”Beam position and elliptical rafter analysis”~”Jlab-TN-99-042”~”“~”1999”~”A. Deur”~”PHY”~”Electonic file not available”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

929”~”Aperture considerations for the FEL upgrade”~”Jlab-TN-99-043”~”“~”1999”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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930”~”Report on Studies of the Effect on Resolution of the Exit Window of the HRS Spectrometers in Hall A”~”JLab-TN-00-001”~”January”~”2000”~”J. LeRose”~”PHY”~”“~”“~”1”~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

931”~”Spaceframe Structural analysis for the CEBAF upgraded Cryomodule”~”JLab-TN-00-002”~”January”~”2000”~”T. Whitlatch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

932”~”Vacuum Vessel Structural Analysis for JLAB Cryo Upgrade”~”JLab-TN-00-003”~”February”~”2000”~”T. Whitlatch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

933”~”Beam breakup estimate for a BML proposed 10 GeV recirculating linac”~”Jlab-TN-00-004”~”“~”2000”~”Lia Merminga”~”ACC”~”Electonic file not available”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

934”~”Injector linac objects for a high amount SRF driven electron accelerator”~”JLab-TN-00-005”~”February”~”2000”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

935”~”High Brightness Electron Beam Diagnostics and their Applications to Beam Dynamics in a Superconducting Energy-Recovering Free-Electron Laser”~”JLab-TN-00-006”~”February”~”2000”~”P. Piot”~”ACC”~”3 MB file.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

936”~”MAD (B_1 Accelerator driver) concept for a neutrino factory”~”JLab-TN-00-008”~”March”~”2000”~”D. Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

937”~”Design of a Muon Accelerator Driver for a Neutrino Factory”~”JLab-TN-00-009”~”March”~”2000”~”D. Douglas, J. Delayen, D. Douglas, L. Harwood, G. Krafft, V. Lebedev, C. Leemann, L. Merminga”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

938”~”Test and Development of a Cherenkov diffusion detector prototype using Airglass aerogel at TJNAF”~”JLab-TN-00-010”~”April”~”2000”~”L. Lagamba, R. Iommi, B. Wojtsekhowski”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

939”~”Hall D Preliminary Optics Design”~”JLab-TN-00-011”~”May”~”2000”~”J. Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

940”~”WBS 3.2: Beam physics requirements for IR Upgrad driver accelerator”~”JLab-TN-00-012”~”May”~”2000”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

941”~”IRFEL upgrade driver acclerator design, Revision 1.0”~”JLab-TN-00-013”~”June”~”2000”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

942”~”Thermal measurements of upgrade HOM filter assemblies”~”JLab-TN-00-014”~”June”~”2000”~”I.E. Campisi, B. Lewis, G. Myneni”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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943”~”SL21 Return U-tube 2 K Helium Vapor Mass Flow Meter”~”JLab-TN-00-015”~”July”~”2000”~”G. Myneni”~”ACC”~”“~”“~”1”~”1”~”1”~”“~”“~”“~”“~”“~”“~”

944”~”Vertical Drift Chambers for the Hall A High Resolution Spectrometers at Jefferson Lab”~”JLab-TN-00-016”~”August “~”2000”~”K.G. Fissum, W. Bertozzi, J.P. Chen, D. Dale, J. Gao, S. Gilad, C.R. Leathers, N. Liyanage, J.A. Templon, R. Weschler, J. Zhao, H.C. Fenker, A. Gavalya, R.O. Michaels, E.A.J.M. Offerman, J. Segal, B. Wojtsekhowski”~”PHY”~” “~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

945”~”Preliminary Estimate of CSR Effects in the IR Upgrade FEL Driver “~”JLab-TN-00-017”~”August “~”2000”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

946”~”Hall C Raster Veto/Flag Generator”~”JLab-TN-00-018”~”September”~”2000”~”R. Wojcik, C. Yan”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

947”~”Use of the Jlab FEL Beam to Produce MeV Gamma Radiation”~”JLab-TN-00-019”~”September”~”2000”~”G.R. Neil”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

948”~”Longitudinal Phase Space Management in the IR Upgrade FEL Driver”~”JLab-TN-00-020”~”September”~”2000”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

949”~”Measurements of Cavity Input Impedance and Proposed Stub Tuner Locations”~”JLab-TN-00-021”~”September”~”2000”~”J. Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

950”~”BETATRON MOTION WITH COUPLING OF HORIZONTAL AND VERTICAL DEGREES OF FREEDOM”~”JLab-TN-00-022”~”October”~”2000”~”V. Lebedev, S. Bogacz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

951”~”South Linac RF Thunder Storm Sensitivity and the Modification of Wave Guide Vacuum Interlocks”~”JLab-TN-00-023”~”October”~”2000”~”Ganapati Myneni”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

952”~”Calibration of Beam Energy and Spectrometer Center Angles Using Hall A HRS in H(e,e'p)”~”JLab-TN-00-024”~”October”~”2000”~”P. Ulmer, H. Ibrahim, N. Liyanage”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

953”~”Multi_Monitor Emittance Measurement in the IR Demo Driver”~”JLab-TN-00-025”~”November”~”2000”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

954”~”Residual Resistivity Ratio Enhancement in Electron Beam Welds – A Preliminary Report of Findings”~”JLab-TN-00-026”~”November”~”2000”~”J. Brawley, H. Kaiser J. Mammosser, L. Phillips, W. Singer, H. Wen”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

955”~”Design Considerations for Recirculating and Energy Recovering Linacs”~”JLab-TN-00-027”~”November”~”2000”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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956”~”Test results: CEBAF at 6 GeV August 1-7, 2000”~”JLab-TN-00-028”~”November”~”2000”~”J. Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

957”~”Results of the SL21 Return U-tube 2 K Helium Vapor Mass Flow Meter”~”JLab-TN-00-029”~”November”~”2000”~”G. Myneni, R. Ganni and M. Tiefenback”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

958”~”An Energy Recovery Electron Linac-on-Ring Collider”~”JLab-TN-00-030”~”November”~”2000”~”L. Merminga, G. A. Krafft and V. A. Lebedev, Ilan Ben-Zvi”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

959”~”Application of the PCOS 4 System at JLab”~”JLab-TN-00-031”~”December”~”2000”~”I.A. Rachek”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

960”~”Beam Postion Studies for E93050”~”JLab-TN-01-001”~”“~”2001”~”C. Hyde-Wright, L. Todor G. Laueissiere”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

961”~”JLab Experiment E93050 Virtual Compton Scattering”~”JLab-TN-01-002”~”“~”2001”~”S. Jaminion, H. Fonvieille”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

962”~”JLab Experiment E93050 Virtual Compton Scattering “~”JLab-TN-01-003”~”“~”2001”~”S. Jaminion, H. Fonvieille, L. Van Hoorebeke”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

963”~”Single Arm Monte Carlo for Polarized ^3He experiments in Hall A v.0.2”~”JLab-TN-01-004”~”“~”2001”~”A. Deur”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

964”~”JLab Experiment E93050 Virtual Compton Scattering Scintillators Efficiency”~”JLab-TN-01-005”~”“~”2001”~”P.Y. Bertin, R. DiSalvo, G. Laveissiere”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

965”~”X-ray Production of the IR Upgrade”~”JLab-TN-01-006”~”“~”2001”~”G. Neil”~”ACC”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”“~”

966”~”Charm Photoproduction Near Threshold”~”JLab-TN-01-007”~”“~”2001”~”E. Chudakov, R. Ent, J.H. Mitchell, J.M. Lager, J.A. Dunne, J.A. Templon, P.E. Bosted, A. Margaryan”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

967”~”HELIOS Light Source at Jefferson Lab - Beam Optics Re-Design”~”JLab-TN-01-008”~”“~”2001”~”S.A. Bogacz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

968”~”A New Low Emittance Injector for Future FEL Upgrades”~”JLab-TN-01-009”~”“~”2001”~”B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

969”~”An Injector for ERL Project”~”JLab-TN-01-010”~”“~”2001”~”B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

970”~”Calculating Beam Breakup in Superconducting Linear Accelerators”~”JLab-TN-01-011”~”“~”2001”~”G. Krafft, J. Bisognano, Laubach”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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971”~”A guide for the EPR Measurement at Jefferson Lab”~”Jlab-TN-01-012”~”“~”2001”~”M. Liang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

972”~”Is there an alternative to the present upgrade scenario?”~”JLab-TN-01-013”~”“~”2001”~”P. Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

973”~”A Beta<sub>g</sub> = 0.472 Cavity for RIA”~”JLab-TN-01-014”~”“~”2001”~”D. Barni, G. Ciovati, P. Kneisel, C. Pagani, P. Pierini, P. Ylae-Oijala”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

974”~”An Improved Cavity Design for the CEBAF Upgrade”~”JLab-TN-01-015”~”“~”2001”~”D. Barni, C. Ciovati, P. Kneisel, J. Sekutowicz”~”“~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

975”~”The Effect of Field Inhomogeneities in Upgrade Injection Line Dipoles”~”JLab-TN-01-016”~”“~”2001”~”D. Douglas, B.C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

976”~”On A Head-Tail Instability in a Linac-Ring Collider”~”JLab-TN-01-017”~”“~”2001”~”B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

977”~”A Test of Energy Recovery in Large Systems”~”JLab-TN-01-018”~”April”~”2001”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

978”~”Untitled”~”JLab-TN-01-019”~”“~”2001”~”M. Shinn, J. Gubeli”~”ACC”~”Awaiting File from Authors”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

979”~”Statistical Analysis of Cavity Arc Faults - April 2001 Status”~”JLab-TN-01-020”~”“~”2001”~”Jay Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

980”~”A Photocathode DC Gun Based High Brightness Injector”~”JLab-TN-01-021”~”“~”2001”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

981”~”Injector for High Charged Electron Bunches”~”JLab-TN-01-022”~”“~”2001”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

982”~”Multipass Quadrupole Beam Breakup Instability”~”JLab-TN-01-023”~”“~”2001”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

983”~”Some Features of the FEL Upgrade <I>pi</I> Bends”~”JLab-TN-01-024”~”May”~”2001”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

984”~”Hall A HRS Acceptance Study Via White Spectrum Scans in Experiment E94-004”~”JLab-TN-01-025”~”May”~”2001”~”Paul Ulmer”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

985”~”Nano-filter for contamination free back filling of SRF structures”~”JLab-TN-01-026”~”May”~”2001”~”Ganapati Myneni”~”ACC”~”Awaiting File from Authors”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

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986”~”A refinement of the IR/UV upgrade quadrupole systematic multiple specification”~”JLab-TN-01-027”~”May”~”2001”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

987”~”Dipole HOM damping requirement of new 7-cell cavity for the 12 GeV CEBAF upgrade”~”JLab-TN-01-028”~”June”~”2001”~”Byung C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

988”~”Unique electron polarimeter comparison and spin-based energy measurement”~”JLab-TN-01-029”~”June”~”2001”~”Joseph M. Grames”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

989”~”Active Area Definition of GaAs Photocathodes via Anodization: An informal guide to the process of anodizing GaAs photocathodes to define the active area in support of longer operational lifetime in the JLab polarized electron sources.”~”JLab-TN-01-030”~”June”~”2001”~”P.M. Rutt, A.R.Day”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

990”~”Indium Soldering of Anodized GaAs Photocathode Material: Procedure for attaching GaAs photocathodes to stainless steel stalks with Indium solder as used in the JLab polarized electron sources.”~”JLab-TN-01-031”~”June”~”2001”~”P.Adderley, A.R.Day”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

991”~”Sensitivity of the CSR Self-Interaction to the Local Longitudinal Charge Concentration of an Electron Bunch”~”JLab-TN-01-032”~”June”~”2001”~”R. Li”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

992”~”Monte Carlo Simulation for the p(vec{e}, e'K) vec{Lambda} Reaction”~”JLab-TN-01-033”~”June”~”2001”~”Paul Gueye, Tatiana Angelescu, Liliana Teodorescu”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

993”~”Extending the IR Upgrade Driver to Support Megawatt Class FEL Performance”~”JLab-TN-01-034”~”July”~”2001”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

994”~”Helicity Clock Generator”~”JLab-TN-01-035”~”July”~”2001”~”R. Wojcik, N. Sinkin, C. Yan”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

995”~”IR Upgrade Octupole Trim Requirements”~”JLab-TN-01-036”~”July”~”2001”~”D. Douglas, G. Biallas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

996”~”Hall B optics for experiments using coherent bremsstrahlung”~”JLab-TN-01-O37”~”July”~”2001”~”Jay Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

997”~”IR/UV FEL Upgrade Recovery Dump Transport Design”~”JLab-TN-01-038”~”August “~”2001”~”C. Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

998”~”The Separator RF System For the Energy Upgrade”~”JLab-TN-01-039”~”August “~”2001”~”C. Hovater, L. Harwood, R. Nelson, T. Plawski, E. Strong”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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999”~”Design for a Dispersion Section for the IRFEL Wiggler”~”JLab-TN-01-040”~”August “~”2001”~”Stephen Benson, George Biallas, Tommy Hiatt, and Jeff Karn “~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1000”~”Hall D Optics Design - July 2001”~”JLab-TN-01-041”~”August “~”2001”~”Jay Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1001”~”GY Field Homogeneity Evaluation”~”JLab-TN-01-042”~”August “~”2001”~”D. Douglas and G. Biallas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1002”~”Three-Pass Operation of the IR Demo Driver”~”JLab-TN-01-043”~”September”~”2001”~”D. Douglas and C. Tennant”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1003”~”Linearity Testing of COHU and Burle Cameras”~”JLab-TN-01-044”~”September”~”2001”~”Scott Myers”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1004”~”CEBAF-ER: An Energy Recovery and Current Doubling Operational Mode for the Continuous Electron Beam Accelerator Facility “~”JLab-TN-01-045”~”September”~”2001”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1005”~”An Instrument for Precision Angle Measurement”~”Jlab-TN-01-046”~”October”~”2001”~”Boghan Wojtsekhowski”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1006”~”A New Tool For Correlation Studies in Hall A at JLAB”~”JLab-TN-01-047”~”October”~”2001”~”Boghan Wojtsekhowski, P. Degtyarenko, R. Lindgren”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1007”~”Bunch Length and Energy Spread Compression During Recirculation of Multiple Passes in the IR Demo”~”Jlab-TN-01-048”~”October”~”2001”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1008”~”Spectrometer constant determination for the Hall-A High Resolution Spectrometer pair”~”Jlab-TN-01-049”~”October”~”2001”~”Nilanga Liyanage”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”

1009”~”Design Principles for a Compact, 100 kW IR FEL”~”Jlab-TN-01-050”~”October”~”2001”~”Lia Merminga, Stephen V. Benson”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1010”~”IR Upgrade Driver Design, Revision 1.1.2”~”Jlab-TN-01-051”~”October”~”2001”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1011”~”Quadrupole alignment studies in the HRSs”~”Jlab-TN-01-052”~”October”~”2001”~”L. Pentchev, J. LeRose, and the FPP collaboration”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”

1012”~”The Effect of Field Inhomogeneities In or Near the IR Upgrade Driver Compaction Management Elements”~”Jlab-TN-01-053”~”November”~”2001”~”Davis Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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1013”~”Beam Based Diagnostic Tests that Indicate a Possible Chopping Aperture Misalignment”~”Jlab-TN-01-054”~”November”~”2001”~”J.M. Grames, M. Baylac, M. Poelker, M. Stutzman”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1014”~”Effective use of Hall A HRS acceptance with R-functions”~”Jlab-TN-01-055”~”December”~”2001”~”Marat Rvachev”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1015”~”Hall C Energy Drift Monitoring”~”Jlab-TN-01-056”~”December”~”2001”~”P. Gueye”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1016”~”High RRR Niobium Material Studies”~”Jlab-TN-02-001”~”January”~”2002”~”Ganapati Myneni and Peter Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1017”~”A Magnet Field Quality Limitation on ERL Performance”~”Jlab-TN-02-002”~”January”~”2002”~”David Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1018”~”Higher Order Mode Damping Requirements in the SNS Superconducting Linac”~”Jlab-TN-02-003”~”January”~”2002”~”Marc Doleans, Dong-O Jeon, Sang-ho Kim, Ron Sundelin”~”OTP”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1019”~”HOM Measurement Techniques & Results for the SNS Cavities”~”Jlab-TN-02-004”~”January”~”2002”~”G. Ciovati, I.E. Campisi, S. Kim, J. Sekutowicz, R. Sundelin”~”OTP”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1020”~”Method to adjust frequency and length of dumbbells to nominal values”~”Jlab-TN-02-005”~”January”~”2002”~”G. Ciovati, P. Kneisel, J. Sekutowicz”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1021”~”Digital Logic, Algorithms, and Functions for the CEBAF Upgrade LLRF System”~”Jlab-TN-02-006”~”February”~”2002”~”Hai Dong, Curt Hovater, John Musson, Tomasz Plawski”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1022”~”Hydrogen/Deuterium cleaning procedure”~”JLAB-TN-02-007”~”February”~”2002”~”Maud Baylac”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1023”~”Bake of the vertical load lock gun”~”JLAB-TN-02-008”~”February”~”2002”~”Maud Baylac”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1024”~”Thermal Analysis and Optimization of RF Waveguides for SRF Couplers”~”JLAB-TN-02-009”~”February”~”2002”~”Genfa Wu, Larry Phillips”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1025”~”Investigation on a leak in an explosively bound SS/Ti transition piece”~”JLAB-TN-02-010”~”March”~”2002”~”Andy T. Wu, Joe Preble”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1026”~”Requalification of Tokyo Denkai RRR Niobium”~”JLAB-TN-02-011”~”April”~”2002”~”Ganapati Myneni, Peter Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1027”~”Optics Calibration of the Hall A High Resolution Spectrometers using the C ++ Optimizer”~”JLAB-TN-02-012”~”April”~”2002”~”Nilanga Liyanage”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”

1028”~”Engineering Design for the Upgrade FEL optical cavity”~”JLAB-TN-02-013”~”April”~”2002”~”Michelle Shinn for the Optics Design Group”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1029”~”Design details of the IR 10 kW Upgrade Free-electron Laser Resonator”~”JLAB-TN-02-014”~”April”~”2002”~”Stephen Benson”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1030”~”Systematic Uncertainties in E89-003: A report to the Hall A Collaboration”~”JLAB-TN-02-015”~”April”~”2002”~”Kevin Fissum, Paul Ulmer”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1031”~”Chopper Cavities 60Hz Noise Analysis”~”JLAB-TN-02-016”~”April”~”2002”~”Curt Hovater, John Musson, Trent Allison, Geoffrey Krafft”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1032”~”Evaluation of Several Photomultipliers for Use as Beam Halo Counters”~”JLAB-TN-02-017”~”May”~”2002”~”Carl Zorn”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1033”~”High Luminosity Operation of a Large Solid Angle Neutron Detector Array in Jefferson Lab's Hall A”~”JLAB-TN-02-018”~”May”~”2002”~”C.C. Chang, O. Filoti, D.W. Higinbotham, C.W. de Jager, E. Jans, M. Jones, R. Lindgren, P. Markowitz, R. Michaels, E. Piasetzky, A. Shahinyan, S. Sirca, K. Wang, J. Watson, K. Wijesooriya, B. Wojtsekhowski, S. Wood, I. Yaron, L. Zhu”~”PHY”~” “~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1034”~”Chicane Options for Testing Energy Recovery and Current Doubling in CEBAF”~”JLAB-TN-02-019”~”May”~”2002”~”C. Butler, David Douglas, Al Guerra, Christopher Tennant”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1035”~”A Nearly Isochronous Arc With Unlimited Momentum Acceptance”~”JLAB-TN-02-020”~”May”~”2002”~”D. Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1036”~”Error Estimates for CEBAF-ER Phase Delay Chicane Dipoles”~”JLAB-TN-02-021”~”June”~”2002”~”D. Douglas”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1037”~”Study of Master Slit Transmission Versus Effective Optical Pulsewidth and Prebuncher Amplitude”~”JLAB-TN-02-022”~”July “~”2002”~”M. Baylac, J. Grames, J. Hansknecht, M. Poelker”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1038”~”Low-Loss Cavity for the 12 GeV CEBAF Upgrade”~”JLAB-TN-02-023”~”July “~”2002”~”J. Sekutowicz, P. Kneisel, G. Giovati, H. Wang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1039”~”Proposed Orbit Correction Configuration for the CERN CNGS Line”~”JLAB-TN-02-024”~”July “~”2002”~”Yu-Chiu Chao”~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

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1040”~”Preliminary Results from Cavity and Process Particulate Collection”~”JLAB-TN-02-025”~”July “~”2002”~”John Mammosser, Andy T. Wu”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1041”~”A Compact Mirror-Bend-Achromat-Based Energy Recovery Transport System for an FEL Driver”~”JLAB-TN-02-026”~”July”~”2002”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~” “~”“~”“~”“~”“~”“~”“~”1

1042”~”Effect of Heat Treatments on Microstructure of High RRR SNS Niobium”~”JLAB-TN-02-027”~”July”~”2002”~”Andy T. Wu, Ganapati Myneni”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1043”~”A Simulation Program to Study Phase Space Dynamics in CEBAF-ER/CD”~”JLAB-TN-02-028”~”July”~”2002”~”Christopher Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1044”~”Configuring a PC as an EPICS Client”~”JLAB-TN-02-029”~”July”~”2002”~”Christiana Grenoble”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1045”~”A Lead Fluoride Calorimeter for Hall A”~”JLAB-TN-02-030”~”August “~”2002”~”Kathy McCormick, Sirish Nanda”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”

1046”~”Determination of Beam Loss Sensitivity for 10kW FEL Upgrade”~”JLAB-TN-02-031”~”August “~”2002”~”D.N. Johnson, D. Douglas, J. Coleman”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1047”~”Calibration of Spectrometer Central Angles using Hall A HRS in <sup>1</sup>H(e,e'p)”~”JLAB-TN-02-032”~”August “~”2002”~”Hassan Ibrahim, Paul Ulmer, Nilanga Liyanage”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1048”~”IR Upgrade Driver Design, Revision 113a: Recirculator Matching with use of a Permanent Magnet Wiggler”~”JLAB-TN-02-033”~”August “~”2002”~”D. Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1049”~”Superstructure for the 10 kW and the 100 kW FEL Upgrade”~”JLAB-TN-02-034”~”September”~”2002”~”J. Sekutowicz, P. Kneisel, C. Thomas, S. Zheng”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1050”~”Temporal Characterization of Ultrashort Electron Beam Bunch by THz Measurement from a 10 KW FEL Facility”~”JLAB-TN-02-035”~”September”~”2002”~”S. Zhang, M. Shinn, J. Gubeli, S. Benson, G. Neil, G. Williams”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1051”~”Technical Basis for Determining Maximum Public Dose from Radioactive Air Releases at Jefferson Lab “~”JLAB-TN-02-036”~”September”~”2002”~”Scott Schwahn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1052”~”Technical Basis for Estimating Dose from a Tritium Uptake”~”JLAB-TN-02-037”~”September”~”2002”~”Scott Schwahn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1053”~”HELIOS Injector Shielding in the Free Electron Laser Equipment Room”~”JLAB-TN-02-038”~”September”~”2002”~”Scott Schwahn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1054”~”A Brief Statistical Analysis of Accident/Incident Rates at Jefferson Lab”~”JLAB-TN-02-039”~”September”~”2002”~”Scott Schwahn”~”ACC”~”Rev. 2: This revision brings the tech note up to date. The conclusions have not changed.”~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1055”~”Thermal Analysis of a 13 kW Waveguide for the 12 GeV Upgraded Cryomodule”~”JLAB-TN-02-040”~”September”~”2002”~”Robby Hicks, Ed Daly”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1056”~”DC Field Quality Characterization of FEL Upgrade Dipoles”~”JLAB-TN-02-041”~”September”~”2002”~”D. Douglas and G. Biallas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1057”~”Estimates of the Beam Breakup Thresholds in the 10KW FEL due to HOMS”~”JLAB-TN-02-042”~”September”~”2002”~”K.B. Beard, L. Merminga, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1058”~”TDBBU and MATBBU Input File Format”~”JLAB-TN-02-043”~”September”~”2002”~”K.B. Beard, L. Merminga, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1059”~”matbbu 2.4: A Tool to Estimate Beam Breakup due to Higher Order Modes”~”JLAB-TN-02-044”~”September”~”2002”~”K.B. Beard, L. Merminga, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1060”~”tdbbu 1.6: Another Tool for Estimating Beam Breakup due to Higher Order Modes”~”JLAB-TN-02-045”~”September”~”2002”~”K.B. Beard, L. Merminga, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1061”~”Protocol for Mounting and Wiring Haimson-style Air-Core Magnets”~”JLAB-TN-02-046”~”October”~”2002”~”J. Grames, P. Adderley, J. Clark, T. Day”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1062”~”Detuning of one cell in an Upgrade cavity”~”JLAB-TN-02-047”~”October”~”2002”~”C. Thomas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1063”~”Quest for HOM damping in IRFEL project: Damping of higher order mode through FPC coupler on a cold cavity”~”JLAB-TN-02-048”~”October”~”2002”~”C. Thomas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1064”~”Frequency Measurements on the Prototype SNS Medium-b Cryomodule under Pulsed and CW Operation”~”JLAB-TN-02-049”~”October”~”2002”~”Jean Delayen, Ed Daly, Kirk Davis, Steve Smee”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1065”~”Speculation Concerning CEBAF Reproducibility”~”JLAB-TN-02-050”~”October”~”2002”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1066”~”Post-Purification of the End Groups for the Medium Beta SNS Cavities “~”JLAB-TN-02-051”~”November”~”2002”~”P. Kneisel, G. Myneni, M. Pekeler, W. Singer, X. Singer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1067”~”Cyclic Testing of The SNS DESY Style Seals “~”JLAB-TN-02-052”~”November”~”2002”~”T. M. Rothgeb, P.E. and R. B. Overton”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1068”~”The Thermal Conductivitiy of Macor at Intermediate Cryogenic Temperatures”~”JLAB-TN-02-053”~”December”~”2002”~”H.N. Rutt”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1069”~”Canonical Formulations and Cancellation Effect in Electrodynamics of Relativistic Beams on a Curved Trajectory”~”JLAB-TN-02-054”~”December”~”2002”~”Rui Li, Ya. S. Derbenev”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1070”~”My Code Development Style, Organization, amd Platform Dependency Guide”~”JLAB-TN-03-001”~”January”~”2003”~”K.B. Beard”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1071”~”Third Harmonic Lasing Option for 1 micron operation at 10 kW”~”JLAB-TN-03-002”~”January”~”2003”~”Stephen Benson”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1072”~”SUPERFIT: a Computer Code to Fit Surface Resistance and Penetration Depth of a Superconductor”~”JLAB-TN-03-003”~”January”~”2003”~”Gigi Ciovati”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1073”~”An Overview of Emittance Measurements for CEBAF-ER”~”JLAB-TN-03-004”~”January”~”2003”~”Christopher Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1074”~”An Approach to Measure Both Emittance and Energy-Spread in the Extraction Region of CEBAF-ER”~”JLAB-TN-03-005”~”January”~”2003”~”Christopher Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1075”~”CEBAF Energy Recovery Experiment - Proposal”~”JLAB-TN-03-006”~”February”~”2003”~”Co-Spokesmen: Alex Bogacz and Andrew Hutton; Jay Benesch, Corey Butler, Yu Chao, Swapan Chattopadhyay, Richard Dickson, David Douglas, Al Guerra, Geoffrey Krafft, Ron Lauze, Robert May, Lia Merminga, George Neil, Will Oren, Michael Spata, Chris Tennant, Michael Tiefenback, Karen White “~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1076”~”JLab polarized electron guns operations in 2002”~”JLAB-TN-03-007”~”March”~”2003”~”Maud Baylac”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1077”~”SNS Coupler Bake Stand Data Acquisition System”~”JLAB-TN-03-008”~”April”~”2003”~”Christiana Grenoble”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1078”~”Operating Instructions for the Coupler Bake Stand LabView Software BO_main.vi”~”JLAB-TN-03-009”~”April”~”2003”~”Christiana Grenoble”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1079”~”LabView Software for SNS 805 Cavity Testing in the Jefferson Lab Vertical Test Area”~”JLAB-TN-03-010”~”April”~”2003”~”Christiana Grenoble”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1080”~”A Single-lens Laser Beam Shaper for Uniform Flat-top Profiles”~”JLAB-TN-03-011”~”April”~”2003”~”S. Zhang , G. Neil, M. Shinn “~”ACC”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”1

1081”~”Vacuum Chamber Contributions to 10 kW FEL Dipole Field Maps”~”JLAB-TN-03-O07”~”March”~”2003”~”T. Hiatt, M. Beck, G. Biallas, K. Sullivan, D. Waldman”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1082”~”HOM Damping Measurement on HG and LL Copper Model”~”JLAB-TN-03-012”~”April”~”2003”~”Genfa Wu”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1083”~”Gun Vacuum Performance Measurements February 2003”~”JLAB-TN-03-013”~”April”~”2003”~”Marcy Stutzman”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1084”~”How to Control a Multipass Beam Breakup”~”JLAB-TN-03-014”~”April”~”2003”~”Byung C. Yunn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1085”~”Performance Qualification of 2F Region GX/GQ Dipoles”~”JLAB-TN-03-015”~”April”~”2003”~”G. Biallas, D. Douglas, T. Hiatt, and C. Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1086”~”X-Ray Lithography toward 15 nm”~”JLAB-TN-03-016”~”May”~”2003”~”Gwyn Williams”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1087”~”Target Density Fluctuations and Bulk Boiling in the Hall A Cryotarget”~”JLAB-TN-03-017”~”May”~”2003”~”D.S. Armstrong, B. Moffit, and R. Suleiman”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1088”~”Photo-Cathode Preparation in Load-Locked Gun”~”JLAB-TN-03-018”~”May”~”2003”~”Marcy L. Stutzman and Philip Adderley”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1089”~”Surface Composition Analysis of a Degraded Copper Plate and Scrapings from The Inner Surface of An SRF Coupler”~”JLAB-TN-03-019”~”May”~”2003”~”Andy T. Wu, K. Wilson, M. Wiseman, and I. Campisi”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1090”~”Proposal For The Development of a 1 MW FEL Structure”~”JLAB-TN-03-020”~”May”~”2003”~”J. Sekutowicz , P. Kneisel and G. Wu”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1091”~”Compact High Power THz Source”~”JLAB-TN-03-021”~”June”~”2003”~”G.A. Krafft”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1092”~”Configuring a PC as an EPICS Server”~”JLAB-TN-03-022”~”June”~”2003”~”Robert Lewis, Christiana Grenoble”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1093”~”Parmela-V93.1kb0.3g7, CEBAF Injector Simulation”~”JLAB-TN-03-023”~”June”~”2003”~”K. B. Beard and B.Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1094”~”Spin Transport in the HRS”~”JLAB-TN-03-024”~”June”~”2003”~”Lubomir Pentchev”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”

1095”~”Hall C Superharp System”~”JLAB-TN-03-025”~”July”~”2003”~”Chen Yan”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1096”~”Application of Intermittent Kicker System for Operation of Moeller Polarimeter in Beam Current Range 10 – 200 µA”~”JLAB-TN-03-026”~”July”~”2003”~”Chen Yan, Nikolai Sinkine, Andy Wu”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1097”~”Hall D Optics Design - July 2003”~”JLAB-TN-03-027”~”July”~”2003”~”Jay Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1098”~”Parmela_fel0.2: FEL Injector Simulation”~”JLAB-TN-03-028”~”September”~”2003”~”K. B. Beard, B. Yunn, C. H. Garcia”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1099”~”Free Electron Laser X-Ray Beam Line Components”~”JLAB-TN-03-029”~”September”~”2003”~”Allison K. Schue and James R. Boyce”~”ACC”~”Waiting for file from authors.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1100”~”An Image Charge Undulator Prototype for a Flat Electron Beam”~”JLAB-TN-03-030”~”September”~”2003”~”Allison K. Schue and James R. Boyce”~”ACC”~”Waiting for file from authors.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1101”~”Dipole Ripple Driven Timing Jitter In the IR Upgrade”~”JLAB-TN-03-031”~”September”~”2003”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1102”~”Compaction Management For Mirror Bend Achromats”~”JLAB-TN-03-032”~”September”~”2003”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1103”~”Isospin Violating Effects in Low Energy Hadronic Physics”~”JLAB-TN-03-033”~”October”~”2003”~”B. Ananthanarayan”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1104”~”HOM calculations for a SuperCell Cryomodule in the 10kW FEL”~”JLAB-TN-03-034”~”October”~”2003”~”K. B. Beard, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1105”~”HOM calculations for CEBAF module SL21 and NL11 in the 10kW FEL”~”JLAB-TN-03-035”~”October”~”2003”~”K. B. Beard, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1106”~”Comparison of tdbbu and matbbu”~”JLAB-TN-03-036”~”October”~”2003”~”K. B. Beard, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1107”~”Exploration of robust matching alternatives for hall lines using Hall B as test bed”~”JLAB-TN-03-037”~”October”~”2003”~”Jay Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1108”~”Estimates of the Beam Breakup Threshold in the JAERI FEL”~”JLAB-TN-03-038”~”October”~”2003”~”K. B. Beard, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1109”~”Betatron Stability in a Field-Modulated Compaction-Managed Mirror-Bend Achromat”~”JLAB-TN-03-039”~”October”~”2003”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1110”~”Qualitative behavior of the 10 kW IR Upgrade FEL Injector vs. PARMELA modeling”~”JLAB-TN-03-040”~”October”~”2003”~”S. Benson, D. Douglas and C. Hernandez-Garcia”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1111”~”Preliminary investigation of a periodically HOM-damped RF cavity “~”JLAB-TN-03-041”~”October”~”2003”~”Genfa Wu”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1112”~”Layout of the CEBAF Injector”~”JLAB-TN-03-042”~”November”~”2003”~”K. B. Beard, B. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1113”~”Tuner Effect on the Field Flatness of SNS Superconducting RF Cavity”~”JLAB-TN-03-043”~”November”~”2003”~”Haipeng Wang, Sun An”~”ACC”~”Paper submitted to LINAC 2004, JLAB-ACC-04-263”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1114”~”Analysis of Emittance Measurements of the Energy-Recovered Beam in CEBAF-ER”~”JLAB-TN-03-044”~”November”~”2003”~”Chris Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1115”~”Modeling a Transverse Feedback System for an Energy Recovering Linac”~”JLAB-TN-03-045”~”November”~”2003”~”Chris Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1116”~”GRAINSIZE.CPP: Computer Code Written to Calculate Grain Size on Nb Samples Measured by Profilometer”~”JLAB-TN-03-046”~”December”~”2003”~”Robert Ike III, Andy Wu”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1117”~”Chicane Raster System for Application of Zero Incident Angle in Q_weak Experiment”~”JLAB-TN-04-001”~”February”~”2004”~”Chen Yan”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1118”~”Hall C Kicker System Upgrade for Moeller Polarimeter Operation at High Beam Current”~”JLAB-TN-04-002”~”February”~”2004”~”C.Yan, H.Fenker, D.Gaskell”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1119”~”Analysis and Testing of the Prototype Coarse Tuner for the Renascence Cryomodule”~”JLAB-TN-04-003”~”March”~”2004”~”R. Hicks, E. F. Daly, G. Davis, K. Smith, J. Henry, J. Fischer “~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1120”~”How to Recover Energy In Linear Collider”~”JLAB-TN-04-004”~”March”~”2004”~”Byung C. Yunn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1121”~”Using the congruent (frosting) temperature of GaAs to calibrate the load lock gun thermocouple”~”JLAB-TN-04-005”~”March”~”2004”~”Joe Grames”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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1122”~”JLab polarized electron guns operations in 2001”~”JLAB-TN-04-006”~”March”~”2004”~”Maud Baylac”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1123”~”Is Cryomodule Damping a Hoax?”~”JLAB-TN-04-007”~”March”~”2004”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1124”~”Estimated Beam Breakup Threshold Currents in the 10 kW FEL due to HOMs in the 7-Cell Cryomodule”~”JLAB-TN-04-008”~”April”~”2004”~”C. Tennant, E. Pozdeyev, S. Simrock, A. Sun, H. Wang”~”ACC”~”Revised by author April 21, 2004.”~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1125”~”Configuring a Tektronix TDS3000 Series Oscilloscope on Ethernet & Interacting with it in LabView 7”~”JLAB-TN-04-009”~”April”~”2004”~”Robert Lewis, Christiana Grenoble”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1126”~”Design of a 2 K Heat Station for the FEL03 13 kW Waveguides”~”JLAB-TN-04-010”~”April”~”2004”~”Robby Hicks, Ed Daly “~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1127”~”Design and Analysis of the Renascence Cryomodule Warm/Cold Beampipe Transitions ”~”JLAB-TN-04-011”~”April”~”2004”~”Robby Hicks, Ed Daly “~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1128”~”Technical Justification and Mitigations for Removal of Certain CARMs from the Personnel Safety System”~”JLAB-TN-04-012”~”June”~”2004”~”Scott Schwahn, Erik Abkemeier”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1129”~”Calibration of the CEBAF injector high voltage power supply versus the 100 keV polarized source Faraday cup”~”JLAB-TN-04-013”~”April”~”2004”~”Maud Baylac”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1130”~”Nb/Cu, Nb3Sn/Cu Thin Film Cavity “~”JLAB-TN-04-014”~”May”~”2004”~”Genfa Wu”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1131”~”RF test of a beta=0.47 5 cell cavity for the TRASCO project”~”JLAB-TN-04-015”~”May”~”2004”~”P. Kneisel, G. Ciovati”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1132”~”A Skew-Quad Eigenmode Exchange Module (SQEEM) for the FEL Upgrade Driver Backleg Transport”~”JLAB-TN-04-016”~”May”~”2004”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1133”~”A Phase Trombone Based on the IR Upgrade Driver Backleg FODO Transport “~”JLAB-TN-04-017”~”May”~”2004”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1134”~”A Study on Ion Beam Stability in ELIC”~”JLAB-TN-04-018”~”June”~”2004”~”Byung C. Yunn “~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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1135”~”Equation for the Multi-pass Beam Breakup Threshold Current for a Single Mode and a 4x4 Recirculation Matrix”~”JLAB-TN-04-019”~”July”~”2004”~”E. Pozdeyev, C. Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1136”~”Simulation Results of Two-Dimensional Multi-Pass Beam Breakup”~”JLAB-TN-04-020”~”July”~”2004”~”C. Tennant, E. Pozdeyev”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1137”~”Accuracy of Prediction of the Multi-pass Beam Breakup Threshold Current in Beam Transfer Function and "Decay Time" Measurements”~”JLAB-TN-04-021”~”July”~”2004”~”E. Pozdeyev, C. Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1138”~”Thermal Analysis of HOM Feedthroughs”~”JLAB-TN-04-022”~”July”~”2004”~”Katherine Wilson”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1139”~”Reflections on Rotators, or, How to Turn the FEL Upgrade 3F Skew Quad "Rotator" Into a Skew Quad Rotator “~”JLAB-TN-04-023”~”August “~”2004”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1140”~”Sub-picosecond electron bunch length measurement by terahertz radiation”~”JLAB-TN-04-024”~”August “~”2004”~”S.Zhang S.Benson D.Douglas M.Shinn and G.Williams”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1141”~”Operation of the FEL Upgrade with Skew Quad Reflection and Rotation “~”JLAB-TN-04-025”~”August “~”2004”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1142”~”TDBBU 3.1, Putting Lasing Into the Beam Breakup Simulations”~”JLAB-TN-04-026”~”September”~”2004”~”K.B.Beard, D.Douglas, B.Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1143”~”Evaluation of HOM Coupler Probe Heating by HFSS(TM) Simulation”~”JLAB-TN-04-027”~”September”~”2004”~”G. Wu, H. Wang, R. A. Rimmer, C. E. Reece”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1144”~”A THz Suppression Chicane for the FEL Upgrade Energy Recovery Transport (IR Upgrade Design Revision 113b) “~”JLAB-TN-04-028”~”September”~”2004”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1145”~”Jlab polarized electron guns operation, January 2003-August 2004”~”JLAB-TN-04-029”~”October”~”2004”~”Maud Baylac”~”ACC”~”Waiting for file from authors.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1146”~”Lifetime measurements of the Jlab polarized electron guns (2001-2004)”~”JLAB-TN-04-030”~”October”~”2004”~”Maud Baylac”~”ACC”~”Waiting for file from authors.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

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1147”~”A MathCAD Program to Calculate the RF Waves Coupled from a WR650 Three-Stub Tuner to a CEBAF Superconducting Cavity”~”JLAB-TN-04-031”~”October”~”2004”~”Haipeng Wang”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1148”~”Comment and Correction to L. Doolittle’s Note “Waveguide Surface Currents”“~”JLAB-TN-04-032”~”October”~”2004”~”Haipeng Wang”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1149”~”Hall D behind B or How an exercise to allow energy measurement in hall B changed into an examination of moving GlueX to the west end of the machine”~”JLAB-TN-04-033”~”October”~”2004”~”Jay Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1150”~”reserved”~”JLAB-TN-04-034”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1151”~”HOM Damping Requirement for 12 GeV Upgrade”~”JLAB-TN-04-035”~”November”~”2004”~”Byung Yunn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1152”~”Radiation Source Terms and Possible Solution for Segmenting the Injector and North Linac Sections of CEBAF”~”JLAB-TN-04-036”~”November”~”2004”~”Erik Abkemeier, Keith Welch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1153”~”Rationale for Selection of Controlled Area Radiation Monitor Probe Placement and Alarm Setpoints in the Vertical Test Area”~”JLAB-TN-04-037”~”November”~”2004”~”Erik Abkemeier, K. Welch, D. Hamlette, M. Washington, Z. Edwards, R. Mosbrucker”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1154”~”Radiation Source Terms and General Estimate of Shielding Requirements for Proposed Injector Test Stand in FEL Equipment Room”~”JLAB-TN-04-038”~”November”~”2004”~”Erik Abkemeier”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1155”~”Waveguide Arc Restrike Test Results”~”JLAB-TN-04-039”~”December”~”2004”~”Tom Powers, Doug Curry, Kirk Davis, Larry King, and Mike Tiefenback”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1156”~”A Review of the SL21 RF/Cryogenic Event of Nov. 4, 2004”~”JLAB-TN-04-040”~”December”~”2004”~”Tom Powers”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1157”~”Tagger Design Optimization”~”JLAB-TN-04-041”~”December”~”2004”~”Malek Mazouz, Jacques Berger, Jean-Francois Muraz, Adrien Patti, Francis Vezzu, Eric Voutier”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1158”~”Magic Energies for the 12 GeV Upgrade”~”JLAB-TN-04-042”~”December”~”2004”~”Joe Grames”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1159”~”Precision Phase Noise Measurements Using The Agilent 89410A Vector Signal Analyzer”~”JLAB-TN-05-001”~”January”~”2005”~”Tomasz Plawski, Curt Hovater”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1160”~”Thermal Testing of Two HOM Feedthrough Designs for SNS and Renascence Cryomodules”~”JLAB-TN-05-002”~”January”~”2005”~”T. M. Rothgeb, P. E., L. Phillips”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1161”~”Preliminary Design for the Recirculated Injector of CEBAF 12 GeV Upgrade”~”JLAB-TN-05-003”~”January”~”2005”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1162”~”Improved Optimization of North Linac Momentum Profile for CEBAF 12 GeV Upgrade”~”JLAB-TN-05-004”~”January”~”2005”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1163”~”Design of Vertical Separation Schemes for the CEBAF 12 GeV Upgrade Extraction Lines”~”JLAB-TN-05-005”~”January”~”2005”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1164”~”Worksheet for Measuring the Location of the Gun2 and Gun3 Solenoid and Correction Magnets”~”JLAB-TN-05-006”~”February”~”2005”~”Joe Grames, Danny Machie”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1165”~”FEL UV Beam line for HKS Target Tests”~”JLAB-TN-05-007”~”February”~”2005”~”Lukas Osborne, Jim Boyce, David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1166”~”Magnet sign conventions and shunts configuration”~”JLAB-TN-05-008”~”February”~”2005”~”Yves Roblin”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1167”~”SRF Cavity Cell Geometry Options for the CEBAF 12 GeV Upgrade”~”JLAB-TN-05-009”~”February”~”2005”~”Charlie Reece”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1168”~”Operational Fade Study for TLD-760”~”JLAB-TN-05-010”~”February”~”2005”~”Erik Abkemeier”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1169”~”On the measurement of induced radioactivity and suggested criteria for release of activated materials”~”JLAB-TN-05-011”~”February”~”2005”~”Geoffrey Stapleton”~”ACC”~”RCG Note 90-001”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1170”~”On the use of Geiger-Muller radiation detectors in with pulsed beams”~”JLAB-TN-05-012”~”February”~”2005”~”Geoffrey Stapleton”~”ACC”~”RCG Note 90-002”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1171”~”Activation of the beam dumps in the FET”~”JLAB-TN-05-013”~”February”~”2005”~”Geoffrey Stapleton”~”ACC”~”RCG Note 90-003”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1172”~”Standardization for radiation monitoring equipment”~”JLAB-TN-05-014”~”February”~”2005”~”Bob May”~”ACC”~”RCG Note 91-004”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1173”~”Radiation Monitor Requirements for the CEBAF Experimental Area”~”JLAB-TN-05-015”~”February”~”2005”~”Geoffrey Stapleton”~”ACC”~”RCG Note 91-005”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1174”~”Statistical evaluation of CEBAF ground water analysis of samples collected September 1989 - March 1991”~”JLAB-TN-05-016”~”February”~”2005”~”R. May, C. Wells”~”ACC”~”RCG Note 91-006”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1175”~”Evaluation of ground water analyses for samples collected from September 1989 to March 1992”~”JLAB-TN-05-017”~”February”~”2005”~”C. Wells”~”ACC”~”RCG Note 92-009”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1176”~”Establishment of smear counting method for the HT1000”~”JLAB-TN-05-018”~”February”~”2005”~”C. Wells”~”ACC”~”RCG Note 92-011”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1177”~”Accidental radiation exposure”~”JLAB-TN-05-019”~”February”~”2005”~”R. May”~”ACC”~”RCG Note 93-012”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1178”~”Requirements for 100 keV Injector”~”JLAB-TN-05-020”~”February”~”2005”~”Scott Schwahn, Keith Welch”~”ACC”~”RCG Note 93-013”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1179”~”Radiation Control Group Note 94-14”~”JLAB-TN-05-021”~”February”~”2005”~”Bob May”~”ACC”~”RCG Note 94-014”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1180”~”Dose rate around "C" Stub Shielding Wall”~”JLAB-TN-05-022”~”February”~”2005”~”Scott Schwahn, Bob May”~”ACC”~”RCG Note 93-015”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1181”~”Summary of ground water sample results September 1989 to March 1993”~”JLAB-TN-05-023”~”February”~”2005”~”C. Wells”~”ACC”~”RCG Note 93-016”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1182”~”Characterization of the Eberline 1000B Multiple Source Gamma Calibrator and the Model 773 Instrument Calibrator “~”JLAB-TN-05-024”~”February”~”2005”~”C. Wells, D. Dotson, L. Burd”~”ACC”~”RCG Note 93-017”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1183”~”Dose rates in occupied areas behind shielding walls in Hall A, B, and C transfer tunnels”~”JLAB-TN-05-025”~”February”~”2005”~”Scott Schwahn”~”ACC”~”RCG Note 94-01”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1184”~”Beam loss considerations”~”JLAB-TN-05-026”~”February”~”2005”~”Bob May, Geoff Stapleton”~”ACC”~”RCG Note 94-02”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1185”~”Air activation from end station C operation with continuous ventilation and no He bag”~”JLAB-TN-05-027”~”February”~”2005”~”Bob May, Geoff Stapleton”~”ACC”~”RCG Note 95-01”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1186”~”Study of the Vertical Component of the Beam Polarization for the 2004 HAPPEX-2 Run”~”JLAB-TN-05-028”~”February”~”2005”~”Joseph M. Grames”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1187”~”August 2004 SAD – RF Maintenance and Restoration Issues”~”JLAB-TN-05-029”~”February”~”2005”~”Rick Nelson”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1188”~”The Design of Argon Filled Coaxial Beam Loss Ion Chambers at CEBAF”~”JLAB-TN-05-030”~”February”~”2005”~”D. Dotson, L. Kirkland, R. May, G. Stapleton”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1189”~”LLRF Tests in the FEL and CEBAF with the Cornell Digital LLRF System”~”JLAB-TN-05-031”~”February”~”2005”~”K. Davis, C. Grenoble, A. Hofler, C. Hovater, T. Plawski , and T. Powers, Jefferson Lab; S. Belomestnykh, R. Kaplan, M. Liepe, Cornell University”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1190”~”A note on multi-pass beam breakup with a coupled optics”~”JLAB-TN-05-032”~”March”~”2005”~”Byung Yunn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1191”~”Monitoring of the calibration constants of the DVCS calorimeter”~”JLAB-TN-05-033”~”March”~”2005”~”Malek Mazouz, Eric Voutier”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1192”~”4m Dipole Specification for the 12 GeV Upgrade”~”JLAB-TN-05-034”~”March”~”2005”~”Robin Wines”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1193”~”A single cavity model of multi-pass beam breakup in recirculating linac”~”JLAB-TN-05-035”~”April”~”2005”~”Byung Yunn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1194”~”Magnet Modifications of the Spreader and Recombiner Regions for the 12 GeV Upgrade”~”JLAB-TN-05-036”~”March”~”2005”~”Robin Wines”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1195”~”High Current Measurements of a QB and QC Quadrupole”~”JLAB-TN-05-037”~”March”~”2005”~”T. Hiatt, K. Baggett, M. Beck, K. Sullivan and M. Wiseman”~”ACC”~”Please refer to <a href="http://tnweb.jlab.org/tn/2007/07-055.pdf">JLAB-TN-07-055</a>“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1196”~”Accelerated Life Test of a CEBAF BB Dipole with H-Steel “~”JLAB-TN-05-038”~”March”~”2005”~”T. Hiatt, K. Baggett, M. Beck, K. Sullivan and M. Wiseman”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1197”~”Rationale for removal of CARMS on Hall A and C Domes from the PSS System and placement on a separate diagnostic communication loop”~”JLAB-TN-05-039”~”March”~”2005”~”E. Abkemeier, K. Welch, M. Washington”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1198”~”Microphonics Evaluation for the CEBAF Energy Upgrade”~”JLAB-TN-05-040”~”April”~”2005”~”Kirk Davis, Tom Powers”~”ACC”~”Revised by author January 31, 2006. Figure 15 video: http://tnweb.jlab.org/tn/2005/RENS Warm VacVes 1 Movie 2.Avi Figure 16 video: http://tnweb.jlab.org/tn/2005/RENS Warm VacVes 1 Movie 3.Avi “~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1199”~”Quadrupole Requirements and Changes for the CEBAF 12 GeV Upgrade”~”JLAB-TN-05-041”~”April”~”2005”~”M. Wiseman, J. Benesch, Y. Chao, L. Harwood”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1200”~”Timing Corrections of the DVCS Detector”~”JLAB-TN-05-042”~”April”~”2005”~”Malek Mazouz, Pierre-Yves Bertin, Eric Voutier”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1201”~”Measurement Formulae for a Superconducting RF Cavity without Beam Load”~”JLAB-TN-05-043”~”April”~”2005”~”Sun An, Haipeng Wang”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1202”~”RF Parameters for the 12 GeV Upgrade Cryomodule”~”JLAB-TN-05-044”~”April”~”2005”~”Jean Delayen”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1203”~”Study of Muon Energy Loss and Scatter Using g4beamline”~”JLAB-TN-05-045”~”April”~”2005”~”N. Bates and K. Beard”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1204”~”Curvature-Induced Bunch Self-Interaction for an Energy-Chirped Bunch in Magnetic Bends”~”JLAB-TN-05-046”~”April”~”2005”~”Rui Li”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1205”~”Beam Induced HOM Power Spectrum in JLab 1MW ERL-FEL”~”JLAB-TN-05-047”~”April”~”2005”~”Haipeng Wang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1206”~”Radiological Sampling and Gamma Scans Aboard the N.S. Savannah Conducted for the U.S. Maritime Administration “~”JLAB-TN-05-048”~”April”~”2005”~”Keith Welch, Erik Abkemeier, Zachary Edwards”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1207”~”Finite Element Analysis of FEL OC Mirror”~”JLAB-TN-05-049”~”May”~”2005”~”Katherine Wilson”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1208”~”Niobium thin film cavity deposition for a 500MHz copper cavity”~”JLAB-TN-05-050”~”May”~”2005”~”G. Wu, H. L. Phillips, H. Wang, A-M. Valente”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1209”~”Evaluation of Signal Transmission Performance of Hall A/C Target Raster System”~”JLAB-TN-05-051”~”May”~”2005”~”William Gunning”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1210”~”CEBAF 12 GeV Personnel Safety Systems – Preliminary Design”~”JLAB-TN-05-052”~”May”~”2005”~”Kelly Mahoney “~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1211”~”Beam diagnostics and transport magnet requirements for the ARC10 and Hall-D beamlines”~”JLAB-TN-05-053”~”June”~”2005”~”J.F. Benesch, A. Bogacz, A. Freyberger, Y. Chao, M. Spata, M. Tiefenback”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1212”~”Computer simulation studies of two injection options for 12 GeV CEBAF upgrade”~”JLAB-TN-05-054”~”June”~”2005”~”Y. Zhang, J. F. Benesch, Y. Chao, J.M. Grames, R. Kazimi, G. A. Krafft, M. Tiefenback, B. C. Yunn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1213”~”Beam diagnostics and transport magnet requirements for the recirculated injector”~”JLAB-TN-05-055”~”June”~”2005”~”J.F. Benesch, A. Bogacz, A. Freyberger, Y. Chao, M. Spata, M. Tiefenback”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1214”~”Performance and Technical Requirement for the CEBAF Energy Upgrade Low Level RF System”~”JLAB-TN-05-056”~”June”~”2005”~”Curt Hovater, John Musson, Alicia Hofler, Hai Dong”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1215”~”Field Emission in CEBAF's Superconducting RF Cavities and Implications for Future Accelerators”~”JLAB-TN-05-057”~”June”~”2005”~”Jay Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1216”~”Energy calibration and Reconstruction algorithms of the RCS electromagnetic calorimeter”~”JLAB-TN-05-058”~”June”~”2005”~”Vahe Mamyan for the RCS collaboration”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1217”~”Temperature mapping system for single cell cavities”~”JLAB-TN-05-059”~”June”~”2005”~”G. Ciovati, R. Flood, C. Grenoble, L. King, P. Kneisel, M. Morrone, M. Snyder”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1218”~”Estimates of Beam Breakup Thresholds in the 10kW FEL with the Renaissance Cryomodule”~”JLAB-TN-05-060”~”July”~”2005”~”K.B.Beard, C.Tennant, E.Pozdeyev”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1219”~”Transparent Reflections: How to Turn a SQUIB Off and On Without Influencing Betatron Matching”~”JLAB-TN-05-061”~”July”~”2005”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1220”~”Use of a Self-leveling Laser Indicator for Determination of Proper Hook Position with Respect to the Load of a Crane”~”JLAB-TN-05-062”~”July”~”2005”~”J. Segal”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1221”~”Some FEL UV Quadrupole Measurements”~”JLAB-TN-05-063”~”July”~”2005”~”T. Hiatt, K. Baggett, S. Benson, G. Biallas, M. Beck, D. Douglas, S. Higgins, K. Sullivan and M. Tiefenback”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1222”~”LH2 Target Density in Hall A Experiment E01-020”~”JLAB-TN-05-064”~”July”~”2005”~”Paul Ulmer”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1223”~”Simulations of Cumulative Beam Breakup in the AES injector”~”JLAB-TN-05-065”~”August “~”2005”~”Eduard Pozdeyev “~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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1224”~”Feasibility Study of Suppression of Multipass BBU at the Jlab FEL by a Pulsed Phase Trombone”~”JLAB-TN-05-066”~”August “~”2005”~”Eduard Pozdeyev “~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1225”~”Refurbished Cryomodules (C50): Review of Cavity Pair Alignment Requirements and Specifications “~”JLAB-TN-05-067”~”August “~”2005”~”Edward F. Daly and Danny Machie “~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1226”~”Compact Wideband THz Source”~”JLAB-TN-05-068”~”August “~”2005”~”Geoffrey Krafft”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1227”~”Assessment of Hall A Vertical Drift Chamber Analysis Software Performance Through Monte Carlo Simulation”~”JLAB-TN-05-069”~”August “~”2005”~”Amy Orsborn”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1228”~”Technical Basis Document for Inapplicability of Internal Dosimetry Monitoring Program at Jefferson Lab”~”JLAB-TN-05-070”~”September”~”2005”~”E. Abkemeier, K. Welch”~”EHS”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1229”~”Mode-by-Mode Feedback to Alleviate Multipass Beam Breakup”~”JLAB-TN-05-071”~”September”~”2005”~”Chris Tennant”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1230”~”ASME Boiler & Pressure Vessel Code Analysis of the Ampere-Class Cryomodule”~”JLAB-TN-05-072”~”September”~”2005”~”Katherine Wilson”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1231”~”Technical Basis for Calibration Factors Applied to AMS-4 Air Samplers”~”JLAB-TN-05-073”~”September”~”2005”~”K. B. Welch, S. O. Schwahn, R. T. May”~”EHS”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1232”~”alpha, beta, epsilon at CEBAF - What has been measured&#63; How well do others do&#63;”~”JLAB-TN-05-074”~”September”~”2005”~”Jay Benesch”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1233”~”Optics of QDD Spectrometer”~”JLAB-TN-05-075”~”September”~”2005”~”Chen Yan”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1234”~”Moller optics at 0.36 GeV/c for G0 back angle experiment”~”JLAB-TN-05-076”~”October”~”2005”~”Chen Yan”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1235”~”Beam Transport Out of the FEL Injector “~”JLAB-TN-05-077”~”October”~”2005”~”David Douglas “~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1236”~”Combined Function Magnet for the FEL Injector”~”JLAB-TN-05-078”~”October”~”2005”~” T. Hiatt, K. Baggett, M. Beck, G. Biallas and K. Sullivan “~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1237”~”A Modest Proposal for ERL Injection Merges: &#34;Don't&#34;”~”JLAB-TN-05-079”~”October”~”2005”~”David Douglas “~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1238”~”A Skew Chicane Based Betatron Eigenmode Exchange Module”~”JLAB-TN-05-080”~”October”~”2005”~”David Douglas “~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1239”~”Upgrade of Hall C Moller polarimeter optics for operation in the range of 1 to 12 GeV/c”~”JLAB-TN-05-081”~”November”~”2005”~”Chen Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1240”~”Jefferson Lab Experimental End-Station ODH Analysis”~”JLAB-TN-05-082”~”November”~”2005”~”David Kashy”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1241”~”Photocathode Active Area Definition by Solvent-free Anodization”~”JLAB-TN-05-083”~”November”~”2005”~”Marcy Stutzman”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1242”~”MetroLab PDI Measurement System Commissioning Detail”~”JLAB-TN-05-084”~”December”~”2005”~”K. Baggett, M. Beck, T. Hiatt and K. Sullivan”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1243”~”Technical Basis Document for Radioactivity Limits in Liquid as a Result of Activation or Contamination”~”JLAB-TN-06-001”~”January”~”2006”~”Keith Welch, Erik Abkemeier, Bob May”~”ACC”~”Revision 1. Version 1 can be found at <a href="http://tnweb.jlab.org/tn/2006/06-001v1.pdf"> http://tnweb.jlab.org/tn/2006/06-001v1.pdf</a> or <a href="http://tnweb.jlab.org/tn/2006/06-001v1.doc"> http://tnweb.jlab.org/tn/2006/06-001v1.doc</a> .”~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1244”~”Intermittent kicker systems for Moeller measurement in G0 back angle experiments at 80 uA beam”~”JLAB-TN-06-002”~”January”~”2006”~”Chen Yan”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1245”~”Renascence Issues and Thermal Testing Analysis”~”JLAB-TN-06-003”~”January”~”2006”~”Charlie Reece”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1246”~”Synchrotron Radiation Power at CEBAF 12 GeV Upgrade”~”JLAB-TN-06-004”~”February”~”2006”~”Byung Yunn, Eduard Pozdeyev”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1247”~”Digital LLRF Test on Renascence”~”JLAB-TN-06-005”~”February”~”2006”~”H. Dong, A. Hofler, C. Hovater, J. Musson, T. Plawski”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1248”~”Refurbished Cryomodules (C50): Cavity Frequency Recipe”~”JLAB-TN-06-006”~”March”~”2006”~”Edward F. Daly, Danny Forehand and John Fischer”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1249”~”Magnetic Comparisons of a Modified BB Dipole”~”JLAB-TN-06-007”~”March”~”2006”~”T. Hiatt, L. Harwood, R. Wines and M. Wiseman”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1250”~”Irradiation and Field Test of the TRIUMF Preamplifier for the Qweak Experiment”~”JLAB-TN-06-008”~”March”~”2006”~”Dave Mack”~”PHY”~”Postscript file size is approximately 17Mb”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1251”~”Nonlinearity Specification for the Qweak Detector Chain”~”JLAB-TN-06-009”~”March”~”2006”~”Dave Mack”~”PHY”~”Postscript file size is approximately 2Mb”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1252”~”Phase Noise Characterization of a high-power all-solid-state Laser System”~”JLAB-TN-06-010”~”March”~”2006”~”S. Zhang, D. Hardy, M.D. Shinn”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1253”~”High Power RF Measurements on the Renascence Cryomodule”~”JLAB-TN-06-011”~”March”~”2006”~”Michael Drury “~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1254”~”HOM Damping Measurements of the Renascence Cryomodule”~”JLAB-TN-06-012”~”April”~”2006”~”Haipeng Wang, Eduard Pozdeyev and Chris Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1255”~”empty”~”JLAB-TN-06-013”~”April”~”2006”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1256”~”Testing Rationale of 12 GeV Globally Optimized Optics in 6 GeV CEBAF”~”JLAB-TN-06-014”~”April”~”2006”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1257”~”Evaluation and Optimization of Orbit Correction System Configuration of 12 GeV CEBAF”~”JLAB-TN-06-015”~”April”~”2006”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1258”~”Beam Based Characterization of 5-Pass Accelerator Transport October-November 2005”~”JLAB-TN-06-016”~”April”~”2006”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1259”~”Renascence Cryomodule Helium Vessel Design Documentation”~”JLAB-TN-06-017”~”April”~”2006”~”W.R. Hicks”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1260”~”MetroLab PDI Measurement System Performance Optimization”~”JLAB-TN-06-018”~”May”~”2006”~”K. Baggett, M. Beck, T. Hiatt and K. Sullivan”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1261”~”Review of the calculations of the ratio Hc1/Hc as a function of the Ginzburg-Landau parameter in the low-K limit”~”JLAB-TN-06-019”~”May”~”2006”~”G. Ciovati”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1262”~”Monte Carlo Simulation For GepIII Effect Of The Additional Material On The Electron Arm”~”JLAB-TN-06-020”~”May”~”2006”~”Arthur Mkrtchyan, Arshak Asaturyan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1263”~”The Miniaturized Accelerator Driver for Maritime Attack Neutralization (MADMAN): A Compact Accelerator Driver for High-Power Sources of Coherent Radiation”~”JLAB-TN-06-021”~”May”~”2006”~”David Douglas”~”FEL”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1264”~”Suitability of High Power Beam Dumps in Hall A and Hall C for use at 14.5 GeV Operation”~”JLAB-TN-06-022”~”May”~”2006”~”Erik Abkemeier”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1265”~”Longitudinal Image - at the Wiggler - of Injector Phase/Energy Jitter”~”JLAB-TN-06-023”~”May”~”2006”~”David Douglas”~”FEL”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1266”~”Summary of the cryogenic rf tests of a seamless Nb-Cu 2-cell cavity”~”JLAB-TN-06-024”~”May”~”2006”~”G. Ciovati, P. Kneisel, W. Singer, J. Sekutowicz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1267”~”An Investigation of the Sealing Characteristics of a Crushed Style Aluminum Seal”~”JLAB-TN-06-025”~”June”~”2006”~”Tim Rothgeb”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1268”~”Synchrotron Radiation Thermal Effects on the 12 GeV CEBAF”~”JLAB-TN-06-026”~”June”~”2006”~”M. Wiseman, S. Slachtouski, K. Wilson, and B. Yunn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1269”~”Static Thermal Analysis for the Renascence Cryomodule HOM Feedthroughs”~”JLAB-TN-06-027”~”June”~”2006”~”W. R. Hicks”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1270”~”Thermal Analysis of Synchrotron Radiation Effects on CEBAF”~”JLAB-TN-06-028”~”June”~”2006”~”K. M. Wilson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1271”~”An estimate of the maximum acceptable strength of field inhomogeneities in Arc 10 dipoles and quadrupoles of the 12 GeV CEBAF Upgrade”~”JLAB-TN-06-029”~”June”~”2006”~”Eduard Pozdeyev “~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1272”~”Field Error Tolerances – Quadrupole/Dipole Specs”~”JLAB-TN-06-030”~”June”~”2006”~”Alex Bogacz, Michael Tiefenback”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1273”~”A Design Framework for Transforming MADMAN to REALITI”~”JLAB-TN-06-031”~”June”~”2006”~”David Douglas”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1274”~”On the Luminosity Advantage of ERLs for Collider Applications”~”JLAB-TN-06-032”~”July”~”2006”~”Geoffrey Krafft, Byung Yunn, Yaroslav Derbenev”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1275”~”Synchrotron Radiation and its Interferometry at CEBAF Beam Lines”~”JLAB-TN-06-033”~”July”~”2006”~”Pavel Chevtsov”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1276”~”Prototype single-cell cavity for the one ampere project”~”JLAB-TN-06-034”~”July”~”2006”~”P. Kneisel, G. Ciovati, B. Manus, G. Slack, L. Turlington, S. Manning, D. Forehand”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1277”~”Monte Carlo Simulation for SHMS Calorimeter Part I (Version 2a-2d)”~”JLAB-TN-06-035”~”July”~”2006”~” Arthur Mkrtchyan, Vardan Tadevosyan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1278”~”HMS/SOS Tracking Code Enhancement”~”JLAB-TN-06-036”~”July”~”2006”~” Tigran Navasardyan, Peter Bosted, Mark Jones”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1279”~”Evaluation of two Prototype Proton Driver Cavities Fabricated from Large Grain High Purity Niobium”~”JLAB-TN-06-037”~”August “~”2006”~”P. Kneisel, G. Ciovati”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1280”~”BO Magnet Measurement Results June, 2006”~”JLAB-TN-06-038”~”August “~”2006”~”K. Baggett, M. Beck, T. Hiatt and K. Sullivan”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1281”~”Steering in CEBAF since January 1, 2000”~”JLAB-TN-06-039”~”August “~”2006”~”Jay Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1282”~”Calibration of the Hall A HRS Central Kinematics using the 1H(e,e'p) Reaction”~”JLAB-TN-06-040”~”September”~”2006”~”Hassan Ibrahim “~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1283”~”Muon Acceleration in a 'Dogbone' RLA - Beam Dynamics Issues”~”JLAB-TN-06-041”~”October”~”2006”~”Alex Bogacz”~”ACC”~”Chapter of "The International Scoping Study Report on a Neutrino Factory and Super-beam Facility" to be published by Oxford University Press, UK (Jan, 2007)”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1284”~”Non-evaporable getters in a turbomolecular pump backing application”~”JLAB-TN-06-042”~”October”~”2006”~”M. Maskell, G. Myneni, P. Adderley, H. Londer, E. Ogris, C. Day”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1285”~”Total Pressure Measurement Using Residual Gas Analyzers”~”JLAB-TN-06-043”~”October”~”2006”~”M. Maskell, G. Myneni, P. Adderley, G. Brucker, C. Day”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1286”~”ASME Boiler & Pressure Vessel Code Analysis of the 1497 MHz High-Current Cryomodule”~”JLAB-TN-06-044”~”October”~”2006”~”Katherine Wilson”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1287”~”An ERL-Based Amplifier FEL Using the JLab IR Upgrade Driver “~”JLAB-TN-06-045”~”November”~”2006”~”K. Jordan, D. Douglas, S. Benson, and G. Neil”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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1288”~”Safety and Health Analysis of the Arc Magnet Plan for the 12 GeV Upgrade Project”~”JLAB-TN-06-046”~”November”~”2006”~”Patty Hunt, Bob May”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1289”~”Simulating the Effects of a Bunch-by-Bunch Feedback System to Suppress Multipass Beam Breakup in an ERL”~”JLAB-TN-06-047”~”November”~”2006”~”C. Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1290”~”Studies of beam halo formation in the 12GeV CEBAF design”~”JLAB-TN-06-048”~”November”~”2006”~”Arne Freyberger, Yves Roblin”~”ACC”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

1291”~”Field Measurements of the CEBAF 15 degree Bend Magnet”~”JLAB-TN-06-049”~”December”~”2006”~”Tommy Hiatt”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1292”~”A Quality Assurance Review of Spreadsheet Calculations Used to Produce Input Data for CAP88-PC”~”JLAB-TN-06-050”~”December”~”2006”~”Keith Welch, Erik Abkemeier”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1293”~”Figure-8 Electron Ring – Small Equilibrium Emittance Lattice”~”JLAB-TN-06-051”~”December”~”2006”~”Alex Bogacz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1294”~”Figure-8 Ion Ring – Minimum Dispersion Lattice”~”JLAB-TN-06-052”~”December”~”2006”~”Alex Bogacz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1295”~”How to Match A Beam Trajectory to Design Optics, Or What Does It Mean?”~”JLAB-TN-07-001”~”January”~”2007”~”Yu-Chiu Chao”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1296”~”Single Particle Trajectory in the Presence of XY Coupling - Evolution of 4D Courant Snyder Parameters”~”JLAB-TN-07-002”~”January”~”2007”~”Yu-Chiu Chao”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1297”~”Impact on Projected Emittance Growth by Compounded Effects of Systematic Residual Linac Coupling and Betatron Mismatch”~”JLAB-TN-07-003”~”January”~”2007”~”Yu-Chiu Chao”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1298”~”Technical Standard for Radiological Air Cleaning and Ventilation Systems at Jefferson Lab”~”JLAB-TN-07-004”~”February”~”2007”~”Keith Welch, Erik Abkemeier”~”ACC”~”Appended September, 2008, see JLAB-TN-08-058.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1299”~”Monte Carlo Simulation for SHMS Calorimeter Part II”~”JLAB-TN-07-005”~”February”~”2007”~”Arthur Mkrtchyan; Vardan Tadevosyan; Arshak Asaturyan; Hamlet Mkrtchyan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1300”~”QA Quadrupole Field Quality”~”JLAB-TN-07-006”~”February”~”2007”~”Jay Benesch”~”FEL”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1301”~”Resonant Discharge Fast Kicker System for Moller Polarimeter Operating at 11 GeV/c”~”JLAB-TN-07-007”~”February”~”2007”~”C. Yan, N. Sinkine”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1302”~”C50 HOM Elbow Tolerance Study”~”JLAB-TN-07-008”~”February”~”2007”~”Edward F. Daly, Brian Carpenter, Danny Machie, Charles E. Reece and Jeffrey Saunders”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1303”~”A Deterministic Betatron Matching Recipe Based on Periodic FODO Lattice”~”JLAB-TN-07-009”~”March”~”2007”~”Yu-Chiu Chao”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1304”~”Double Bend Achromat Arc Optics for 12 GeV CEBAF”~”JLAB-TN-07-010”~”March”~”2007”~”Alex Bogacz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1305”~”An Analytical Investigation of the BBU Threshold Current for Off-axis Injection and Reinjection in an ERL”~”JLAB-TN-07-011”~”March”~”2007”~”C. Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1306”~”lipss5: software for the Light Pseudoscalar or Scalar Search”~”JLAB-TN-07-012”~”March”~”2007”~”Kevin Beard”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1307”~”Qweak Main Detector Composite Panel Prototype Test”~”JLAB-TN-07-013”~”March”~”2007”~”Arthur Mkrtchyan; Hamlet Mkrtchyan; David Mack”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1308”~”Qweak Main Detector PMT magnetic field shield Test”~”JLAB-TN-07-014”~”March”~”2007”~”Arthur Mkrtchyan,Hamlet Mkrtchyan,David Mack”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1309”~”empty”~”JLAB-TN-07-015”~”April”~”2007”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1310”~”Design Deck for 12 GeV Optics”~”JLAB-TN-07-016”~”April”~”2007”~”Y. Chao, A. Bogacz, A. Freyberger, Y. Roblin, M. Tiefenback”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1311”~”Field error tolerances for Spreader/Recombiner magnets”~”JLAB-TN-07-017”~”April”~”2007”~”A. Bogacz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1312”~”Magnetic field specifications for the multipole content of dipole and quadrupole magnets in the 12GeV upgrade”~”JLAB-TN-07-018”~”April”~”2007”~”A. Bogacz, Y. Roblin”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1313”~”Comparison between DIMAD and OPTIM implementations of multipole fields expansions”~”JLAB-TN-07-019”~”April”~”2007”~”Y. Roblin”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

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1314”~”Alignment and Powering Speci cations for the 12 GeV Upgrade”~”JLAB-TN-07-020”~”April”~”2007”~”Arne Freyberger, Alex Bogacz, Y.-C. Chao, Yves Roblin, Yuhong Zhang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1315”~”High level applications for the 12GeV upgrade”~”JLAB-TN-07-021”~”April”~”2007”~”Y. Chao, Y. Roblin”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1316”~”Diagnostics specifications for the 12GeV upgrade”~”JLAB-TN-07-022”~”April”~”2007”~”A. Freyberger, M. Tiefenback”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1317”~”Extraction scheme for the 12GeV upgrade”~”JLAB-TN-07-023”~”April”~”2007”~”A. Bogacz, J. Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1318”~”12 GeV Accelerator Upgrade, 2007 Dipole and Corrector Magnet Design Summary”~”JLAB-TN-07-024”~”May”~”2007”~”R. Wines, R. Michaud”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1319”~”12 GeV Accelerator Upgrade, 2007 Quadrupole Magnets Design Summary “~”JLAB-TN-07-025”~”May”~”2007”~”M. Wiseman, T. Hiatt, and L. Harwood”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1320”~”Optimized Orbit Correction System Configuration for 12 GeV CEBAF “~”JLAB-TN-07-026”~”May”~”2007”~”Y. Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1321”~”123 MeV Injection Chicane and Compatibility with Global Optics for 12 GeV CEBAF “~”JLAB-TN-07-027”~”May”~”2007”~”Y. Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1322”~”Rationale for Quadrupole Range Requirements for 12 GeV CEBAF”~”JLAB-TN-07-028”~”May”~”2007”~”Y. Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1323”~”Comments on 12 GeV Klystrons”~”JLAB-TN-07-029”~”May”~”2007”~”Jean Delayen and G.A. Krafft”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1324”~”Concept for Extension to Steering Configuration Optimization Program for 12 GeV”~”JLAB-TN-07-030”~”May”~”2007”~”Y. Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1325”~”A Quick Look at CEBAF fOpt data 1998-2007”~”JLAB-TN-07-031”~”June”~”2007”~”Kevin Beard”~”ACC”~”The associated .csv file can be downloaded from <a href="http://tnweb.jlab.org/tn/2007/07-031.csv">http://tnweb.jlab.org/tn/2007/07-031.csv</a>“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1326”~”12 GeV DIMAD Decks”~”JLAB-TN-07-032”~”June”~”2007”~”J. Benesch, A. Bogacz, Y. Chao, A. Freyberger, Y. Roblin, C. Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1327”~”reserved, not used”~”JLAB-TN-07-033”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1328”~”Quick Import”~”JLAB-TN-07-034”~”June”~”2007”~”Jeffrey Eldred”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1329”~”Information Box”~”JLAB-TN-07-035”~”June”~”2007”~”Jeffrey Eldred”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1330”~”UV Branch Driver Model”~”JLAB-TN-07-036”~”June”~”2007”~”Jeffrey Eldred”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1331”~”C100 Helium Vessel, Boiler & Pressure Vessel Code Documentation”~”JLAB-TN-07-037”~”July”~”2007”~”W.R. Hicks, E.F. Daly”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1332”~”Lambertson Septum Magnet Design and Analysis for the 12 GeV Upgrade”~”JLAB-TN-07-038”~”July”~”2007”~”Randy Michaud, Robin Wines, and Jay Benesch”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1333”~”'Phase Trombone'' for Parity Experiments”~”JLAB-TN-07-039”~”July”~”2007”~”Alex Bogacz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1334”~”Performance of MSU Niobium Single Cell Cavities ( Proton Driver, Half Re-entrant) after Post-Purification Heat Treatment at Jlab”~”JLAB-TN-07-040”~”July”~”2007”~”Peter Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1335”~”ODH Risk Assessment CHL Compressor Room”~”JLAB-TN-07-041”~”July”~”2007”~”Mathew Wright”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1336”~”ODH Risk Assessment CHL Cold Box Room”~”JLAB-TN-07-042”~”July”~”2007”~”Mathew Wright”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1337”~”ODH Risk Assessment ESR (Bldg 102)”~”JLAB-TN-07-043”~”July”~”2007”~”Mathew Wright”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1338”~”ODH Risk Assessment CTF (Bldg 57)”~”JLAB-TN-07-044”~”July”~”2007”~”Mathew Wright”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1339”~”Test of the first Single Cell TESLA-Type Cavity fabricated at PKU “~”JLAB-TN-07-045”~”July”~”2007”~”Peter Kneisel, Gianluigi Ciovati”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1340”~”Accelerated Life Test of a CEBAF QA Quadrupole”~”JLAB-TN-07-046”~”August “~”2007”~”T. Hiatt, K. Baggett and M. Beck”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1341”~”RF System Latency for the 12 GeV Upgrade”~”JLAB-TN-07-047”~”August “~”2007”~”C. Hovater, T. Allison, J. Musson, T. Plawski”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1342”~”Reconfiguration of Hall C to “~”JLAB-TN-07-048”~”August “~”2007”~”Chen Yan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1343”~”kmimf 0.1, Kevin's minimization in FORTRAN”~”JLAB-TN-07-049”~”August “~”2007”~”K. Beard”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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1344”~”12GeV Dipole Magnet Measurement Analysis using Curved Beam Trajectories”~”JLAB-TN-07-050”~”August “~”2007”~”K. Baggett, L Harwood, T. Hiatt”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1345”~”C100 Cryomodule Supply/Return Header Design per ASME B31.3”~”JLAB-TN-07-051”~”August “~”2007”~”Gary Cheng, Ed Daly”~”ACC”~”Addendum is JLAB-TN-08-006: <a href="http://tnweb.jlab.org/tn/2008/08-006.pdf">pdf</a> or <a href="http://tnweb.jlab.org/tn/2008/08-006.doc">doc</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1346”~”TM010 Pass Band Modes of TESLA 9-cell Cavity”~”JLAB-TN-07-052”~”September”~”2007”~”Haipeng Wang”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1347”~”SHMS Optics Study”~”JLAB-TN-07-053”~”September”~”2007”~”John J. LeRose”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1348”~”Treatment and Testing of DESY’s Single Crystal Cavity from Heraeus Niobium”~”JLAB-TN-07-054”~”September”~”2007”~”Peter Kneisel”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1349”~”Revision to High Current Measurements of a QB and QC Quadrupole”~”JLAB-TN-07-055”~”September”~”2007”~”T. Hiatt and M. Beck”~”ACC”~”Please refer to <a href="http://tnweb.jlab.org/tn/2005/05-037.pdf">JLAB-TN-05-037</a>“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1350”~”C100 Cryomodule End Can Piping Design per ASME B31.3”~”JLAB-TN-07-056”~”September”~”2007”~”Gary Cheng, Ed Daly”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1351”~”Resolution requirements on beam based transfer matrix measurements across the Capture and the Quarter-Cryo-Module”~”JLAB-TN-07-057”~”September”~”2007”~”Yu-Chiu Chao”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1352”~”Creating Icon Parts”~”JLAB-TN-07-058”~”September”~”2007”~”Ronald Lassiter”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1353”~”ME-10 DXF Scale-down to Ideas Environment”~”JLAB-TN-07-059”~”September”~”2007”~”Ronald Lassiter”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1354”~”Plotting Large Scale Drawings”~”JLAB-TN-07-060”~”September”~”2007”~”Ronald Lassiter”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1355”~”Sendai Trip Report”~”JLAB-TN-07-061”~”October”~”2007”~”L.A. Dillon-Townes”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1356”~”Phase Drift Budget Analysis for 12 GeV 1497 MHz LLRF System”~”JLAB-TN-07-062”~”October”~”2007”~”John Musson”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1357”~”EPICS Channel Archive Facility: Software Requirements Specification”~”JLAB-TN-07-063”~”October”~”2007”~”Chris Slominski”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1358”~”EPICS Channel Archive Facility: Design Specification”~”JLAB-TN-07-064”~”October”~”2007”~”Chris Slominski”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1359”~”Archiving Directly into a Database”~”JLAB-TN-07-065”~”October”~”2007”~”Chris Slominski”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1360”~”Final ODH Risk Assessment, CMTF, June 8, 2002”~”JLAB-TN-07-066”~”October”~”2007”~”Dana Arenius”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1361”~”Rate Dependence of the HMS Tracking Efficiency”~”JLAB-TN-07-067”~”October”~”2007”~”T. Horn, E. Christy, E. Segbefia”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1362”~”Improved RDWIA Physics Models for MCEEP: An Internal Report to the E00-102 Collaboration”~”JLAB-TN-07-068”~”October”~”2007”~”J. L. Herraiz, J. M. Ud´ıas, J. R. Vignote, K. Fissum”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1363”~”Implications of incomplete energy recovery in SRF-based energy recovery linacs”~”JLAB-TN-07-069”~”November”~”2007”~”T. Powers, C. Tennant”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1364”~”Transient ponderomotive effects in superconducting cavities”~”JLAB-TN-07-070”~”November”~”2007”~”T. Powers, K. Davis”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1365”~”Theory and practice of cavity RF test systems”~”JLAB-TN-07-071”~”November”~”2007”~”T. Powers”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1366”~”C50 Cold Pressure Test of Cryomodule SL09”~”JLAB-TN-07-072”~”November”~”2007”~”E. F. Daly, K. Dixon, M. Drury, J. Fischer, D. Forehand, J. Hogan, L. King, R. Overton, J. Preble and K. Worland”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1367”~”ODH Risk Assessment, Test Lab EBW, July 19, 2004”~”JLAB-TN-07-073”~”November”~”2007”~”Dana Arenius”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1368”~”ODH Risk Assessment, Test Lab Clean Room 141, January 25, 2004”~”JLAB-TN-07-074”~”November”~”2007”~”Dana Arenius”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1369”~”ODH Risk Assessment, 19 Rooms in Bldg 58, April 4, 2007 RevB”~”JLAB-TN-07-075”~”November”~”2007”~”Dana Arenius, Mathew Wright”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1370”~”ODH Risk Assessment, Test Lab High Bay, Building 58, June 1, 2006”~”JLAB-TN-07-076”~”November”~”2007”~”Dana Arenius, Mathew Wright”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1371”~”ODH Risk Assessment, Room 210 in Bldg 1, October 26, 2007”~”JLAB-TN-07-077”~”November”~”2007”~”Mathew Wright”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1372”~”ODH Risk Assessment, Test Lab Mechanical Room 141, and Caged EP Area, March 1, 2005”~”JLAB-TN-07-078”~”November”~”2007”~”Dana Arenius”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1373”~”Cryomodule Thermal Shield Circuit Piping Design per ASME B31.3”~”JLAB-TN-07-079”~”November”~”2007”~”Ed Daly”~”ENG”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1374”~”ODH Risk Assessment, Room 118 in Bldg 90, May 29, 2007”~”JLAB-TN-07-080”~”November”~”2007”~”Mathew Wright, Dana Arenius”~”ENG”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1375”~”C100 Cryomodule Vacuum Vessel Analysis per ASME BPV Code”~”JLAB-TN-07-081”~”November”~”2007”~”Gary G. Cheng, William R. Hicks, and Edward F. Daly”~”ENG”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1376”~”ODH Assessment of FEL, Room 109 (Gun Test Stand)”~”JLAB-TN-07-082”~”November”~”2007”~”Mathew Wright, Dana Arenius”~”ENG”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1377”~”Microwave Studio Simulation to Confirm Zenghai Li's PhD Thesis Result on CEBAF 5-cell SRF Cavity's Multiple Field Analysis”~”JLAB-TN-07-083”~”November”~”2007”~”Haipeng Wang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1378”~”ODH Assessment of Room 212 of Bldg 18”~”JLAB-TN-07-084”~”December”~”2007”~”Mathew Wright”~”ENG”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1379”~”ODH Assessment Hall B Gas Shed”~”JLAB-TN-07-085”~”December”~”2007”~”Claus Rode”~”ENG”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1380”~”Implications of Incomplete Energy Recovery in SRF-based ERL”~”JLAB-TN-07-086”~”December”~”2007”~”C. Tennant and T. Powers”~”FEL”~”Limited access document, dated July 21, 2007”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1381”~”ANALYSIS NOTE: The Bjorken sum and the generalized forward spin polarizabilities from the EG1b”~”JLAB-TN-08-001”~”January”~”2008”~”Alexandre Deur”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1382”~”Narrowband and Broadband Impedance Budget of the 1497 MHz HOM-Damped Five Cell High Current Cavity”~”JLAB-TN-08-002”~”January”~”2008”~”F. Marhauser, R. Rimmer, H. Wang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1383”~”C100 Thermal Shield Analysis”~”JLAB-TN-08-003”~”January”~”2008”~”W. R. Hicks”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

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1384”~”Feasibility Study for Measurement of the Parity Violation Asymmetry in Deep Inelastic Scattering Using a Polarized Target”~”JLAB-TN-08-004”~”January”~”2008”~”Xiaochao Zheng”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1385”~”Hall A Arc Energy 11 GeV Mapping Plan”~”JLAB-TN-08-005”~”February”~”2008”~”John LeRose, Arun Saha”~”PHY”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1386”~”C100 Cryomodule Supply/Return Header Design per ASME B31.3 - An Addendum to JLAB-TN-07-051”~”JLAB-TN-08-006”~”February”~”2008”~”Gary Cheng, Ed Daly”~”ENG”~”Addendum to JLAB-TN-07-051.”~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1387”~”ODH Assessment of Room 146A of Bldg 58”~”JLAB-TN-08-007”~”February”~”2008”~”Mathew Wright”~”ENG”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1388”~”Hazard Evaluation of Carbon Dioxide Gas Release in Electro-Polish (EP) Room”~”JLAB-TN-08-008”~”February”~”2008”~”John Kelly”~”EHSQ”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1389”~”BigLight Thomson X-ray production”~”JLAB-TN-08-009”~”February”~”2008”~”James R. Boyce”~”FEL”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1390”~”Neutron Arm Geometry for the GnE Experiment”~”JLAB-TN-08-010”~”February”~”2008”~”Tim Ngo, Albert Shabinyan”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1391”~”Experimental Results from Tests of the 760MHz Triple-Spoke Cavity fabricated at Forschungszentrum Juelich”~”JLAB-TN-08-011”~”February”~”2008”~”P. Kneisel, E. Zaplatine”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1392”~”A 2-Cell Temperature Mapping System for ILC Cavities”~”JLAB-TN-08-012”~”March”~”2008”~”G. Ciovati, R. Flood, P. Kneisel, D. Machie, M. Morrone”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1393”~”Incoherent Estimates for Possibly Coherent Light Sources”~”JLAB-TN-08-013”~”March”~”2008”~”D. Douglas”~”FEL”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1394”~”2002-2007 Field Emission Statistics at Jefferson Lab”~”JLAB-TN-08-014”~”March”~”2008”~”G. Ciovati”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1395”~”C100 Cryomodule Magnetic Shielding Finite Element Analysis”~”JLAB-TN-08-015”~”March”~”2008”~”Gary Cheng”~”ENG”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1396”~”Radiation Heat Studies for the SHMS Horizontal Bender”~”JLAB-TN-08-016”~”March”~”2008”~”A. Asaturyan, A. Bruell, T. Horn, A. Mkrtchyan, H. Mkrtchyan”~”PHY”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”1

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1397”~”ODH Assessment of Nitrogen in the North Linac, South Linac, and Injector”~”JLAB-TN-08-017”~”April”~”2008”~”Mathew Wright”~”ENG”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1398”~”ODH Assessment of Nitrogen in the FEL Mechanical Room (Room 217)”~”JLAB-TN-08-018”~”April”~”2008”~”Mathew Wright”~”ENG”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1399”~”ODH Assessment of Room 209”~”JLAB-TN-08-019”~”April”~”2008”~”Mathew Wright”~”ENG”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1400”~”ODH Assessment of Room 210”~”JLAB-TN-08-020”~”April”~”2008”~”Mathew Wright”~”ENG”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1401”~”SC Cavity Resonance Control System for the 12 GeV Upgrade Cavity: Requirements and Performance”~”JLAB-TN-08-021”~”May”~”2008”~”Tomasz Plawski; Trent Allison; Ramakrishna Bachimanchi; David Hardy; Curt Hovater”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1402”~”The 3m arc dipole (BA) - modeling and comparison with sparse experimental data”~”JLAB-TN-08-022”~”May”~”2008”~”Jay Benesch”~”FEL”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1403”~”Thermal analysis of C100 Cryomodule Coaxial Heat Station and RF cables”~”JLAB-TN-08-023”~”May”~”2008”~”Gary Cheng, Ed Daly”~”ENG”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1404”~”Calculating Multipoles in Opera/TOSCA - mesh and software noise effects”~”JLAB-TN-08-024”~”May”~”2008”~”Jay Benesch”~”FEL”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1405”~”Comparison of Heat Transfer Characteristics for "Pure" and Brazed Niobium “~”JLAB-TN-08-025”~”June”~”2008”~”Joshua Ballard, Robby Hicks and Ed Daly”~”ENG”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2008/08-025.docx">http://tnweb.jlab.org/tn/2008/08-025.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1406”~”Analysis of the Cause of High External Q Modes in the JLab High Gradient Prototype Cryomodule Renascence”~”JLAB-TN-08-026”~”June”~”2008”~”Z. Li, V. Akcelik, L. Xiao, C. Ng, K. Ko, H. Wang, F. Marhauser, J. Sekutowicz, C. Reece, and R. Rimmer”~”ACC”~”published as SLAC-PUB-13266”~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1407”~”Evaluation of synchrotron radiation bucking coil locations in 4m arc dipole”~”JLAB-TN-08-027”~”June”~”2008”~”Jay Benesch”~”FEL”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1408”~”The azimuthal angular dependence of the cross-section in Semi-Inclusive pion electroproduction at low transverse momentum”~”JLAB-TN-08-028”~”June”~”2008”~”H.G. Mkrtchyan”~”PHY”~”“~”“~”“~”1”~”1”~”“~”1”~”“~”“~”“~”“~”1

1409”~”Study of Q2-dependence of cross-section in Semi-Inclusive meson electro-production”~”JLAB-TN-08-029”~”June”~”2008”~”H.G. Mkrtchyan”~”PHY”~”“~”“~”“~”1”~”1”~”“~”1”~”“~”“~”“~”“~”1

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1410”~”Optim Deck for 8 degree hall D line”~”JLAB-TN-08-030”~”June”~”2008”~”Jay Benesch”~”FEL”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1411”~”How much error in 12 GeV CEBAF Injector Final Energy should be allowed?”~”JLAB-TN-08-031”~”July”~”2008”~”Reza Kazimi”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1412”~”Spin precession through CEBAF with unbalanced linacs”~”JLAB-TN-08-032”~”July”~”2008”~”Reza Kazimi”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1413”~”Shielding Basis for Hall D Complex”~”JLAB-TN-08-033”~”July”~”2008”~”Erik Abkemeier, Pavel Degtiarenko, Keith Welch”~”EHSQ”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1414”~”Evaluation of radiation exposure around end stations at JLAB”~”JLAB-TN-08-034”~”July”~”2008”~”Pavel Degtiarenko”~”EHSQ”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1415”~”Requirements for measuring the absolute momentum of the 12 GeV CEBAF injector beam using the injector spectrometer”~”JLAB-TN-08-035”~”July”~”2008”~”Reza Kazimi”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1416”~”Tech Note on the Radiation Hazard from Operating CEBAF RF Separators in a Test Stand Outside the Accelerator Enclosure”~”JLAB-TN-08-036”~”August “~”2008”~”Keith Welch, Bob May”~”EHSQ”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1417”~”HOM Survey of Low Loss Seven Cell Cavities for the CEBAF 12 GeV Upgrade”~”JLAB-TN-08-037”~”August “~”2008”~”Frank Marhauser, Haipeng Wang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1418”~”Concept and Status of the PZT Booster “~”JLAB-TN-08-038”~”August “~”2008”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1419”~”Collection of Notes Related to Future Work on Parity Quality Beam”~”JLAB-TN-08-039”~”August “~”2008”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1420”~”FAQ for Injector Matching”~”JLAB-TN-08-040”~”August “~”2008”~”Yu-Chiu Chao”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1421”~”Correction Mechanisms for Synchrotron Radiation Energy Droop in Beam Transport at CEBAF”~”JLAB-TN-08-041”~”September”~”2008”~”Michael Tiefenback”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1422”~”Normal and skew multipole terms in the dipoles and quadrupoles of the 12GeV CEBAF upgrade”~”JLAB-TN-08-042”~”September”~”2008”~”Yves Roblin”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

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1423”~”The new Hall C beam line”~”JLAB-TN-08-043”~”September”~”2008”~”Jay Benesch”~”FEL”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1424”~”L-Lysine on γ-alumina and kaolinite”~”JLAB-TN-08-044”~”September”~”2008”~”Joan Thomas”~”FEL”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1425”~”Report: April 2008 - Deuterated Minerals”~”JLAB-TN-08-045”~”September”~”2008”~”Joan Thomas”~”FEL”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1426”~”Environmentally significant organic molecules adsorbed onto mineral samples from non-aqueous media: Diffuse reflectance (DRIFTS) infrared spectroscopy”~”JLAB-TN-08-046”~”September”~”2008”~”Joan Thomas, Michael J. Kelley”~”FEL”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1427”~”Large Distance Effects of Graviton-Graviton Interaction, and Implications for Dark Matter and Dark Energy”~”JLAB-TN-08-047”~”September”~”2008”~”Alexandre Deur”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1428”~”CSR Management in FEL Driver Linac-to-Wiggler Transport”~”JLAB-TN-08-048”~”September”~”2008”~”D. Douglas and C. Tennant”~”FEL”~”Limited access document, dated January 4, 2008”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1429”~”Preliminary Beam Breakup Simulations Using Data for the JLAB 748.5 MHz Ampere-class Cryomodule”~”JLAB-TN-08-049”~”September”~”2008”~”C. Tennant”~”FEL”~”Limited access document, dated January 17, 2008”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1430”~”A Remark on One-Dimensional Models of CSR”~”JLAB-TN-08-050”~”September”~”2008”~”D. Douglas and C. Tennant”~”FEL”~”Limited access document, dated July 19, 2008”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1431”~”Preliminary Study of RF Drive Requirements for the INP 100 kW FEL”~”JLAB-TN-08-051”~”September”~”2008”~”C. Tennant, D. Douglas and T. Powers”~”FEL”~”Limited access document, dated July 21, 2008”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1432”~”Design Concept for a Scalable High Power FEL Driver”~”JLAB-TN-08-052”~”September”~”2008”~”D. Douglas and C. Tennant”~”FEL”~”Limited access document, dated September 2, 2008.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1433”~”Figure of Merit for Amplifier/Oscillator Efficiency Comparisons”~”JLAB-TN-08-053”~”September”~”2008”~”D. Douglas and C. Tennant”~”FEL”~”Limited access document, dated September 3, 2008”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1434”~”Design Considerations for the INP 100 kW FEL Driver”~”JLAB-TN-08-054”~”September”~”2008”~”C. Tennant and D. Douglas”~”FEL”~”Limited access document, dated September 12, 2008”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1435”~”Fabrication of 12 GeV Prototype Quadrupoles”~”JLAB-TN-08-055”~”September”~”2008”~”T. Hiatt, K. Baggett, M. Beck, L. Harwood, J. Meyers and M. Wiseman”~”ENG”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1436”~”C50 Cryomodule Cavity Tuner Study – Evaluation of Planetary Gear Box Installed on Tuner Mechanism “~”JLAB-TN-08-056”~”September”~”2008”~”Hrishikesh Phadke and Ed Daly”~”ENG”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2008/08-056.docx">http://tnweb.jlab.org/tn/2008/08-056.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1437”~”ICHIRO5 9-cell Niobium Cavity Processing and Testing at Jefferson Lab”~”JLAB-TN-08-057”~”September”~”2008”~”R. Geng, A.C. Crawford, F. Furuta, K. Saito”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1438”~”Technical Standard for Radiological Air Cleaning and Ventilation Systems at Jefferson Lab”~”JLAB-TN-08-058”~”September”~”2008”~”Keith Welch, Erik Abkemeier”~”EHSQ”~”Modified version of JLAB-TN-07-004, dated January, 2007”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1439”~”Residual Magnetic Field in VTA Dewar 7 “~”JLAB-TN-08-059”~”September”~”2008”~”R. Geng, P. Kushnick”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1440”~”Determination of the influence of machining defects on magnetic fields”~”JLAB-TN-08-060”~”October”~”2008”~”Nicolas Ruiz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1441”~”First-Wall Stand-Off in CEBAF Accelerators”~”JLAB-TN-08-061”~”October”~”2008”~”Michael Tiefenback and Pavel Chevtsov”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1442”~”Higher order field multipoles dependence on machining defects”~”JLAB-TN-08-062”~”October”~”2008”~”Nicolas Ruiz”~”ACC”~”Supplement to JLAB-TN-08-060.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1443”~”Radiation Control Policy and Technical Basis for the Clearance of Ion-Exchange Resins”~”JLAB-TN-08-063”~”October”~”2008”~”Keith Welch, Vashek Vylet, Bob May”~”EHSQ”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1444”~”Evaluation methods for integrated normal multipoles in 3D magnet models”~”JLAB-TN-08-064”~”October”~”2008”~”Nicolas Ruiz”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1445”~”DC gun high voltage conditioning with Krypton gas”~”JLAB-TN-08-065”~”October”~”2008”~”Carlos Hernandez-Garcia”~”FEL”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1446”~”Occupational and Environment Aspects of the Radiation Control Provisions at the Jefferson Lab”~”JLAB-TN-08-066”~”October”~”2008”~”P. Degtiarenko, R. May, S. Schwahn, G. Stapleton”~”EHSQ”~”JLAB-TN-97-017 Revision B October 1997”~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1447”~”12 GeV Upgrade Cryomodule Interlock and Heater Requirements”~”JLAB-TN-08-067”~”October”~”2008”~”T. Allison, R. Bachimanchi, C. Hovater, T. Plawski, D. Seidman”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1448”~”Radiated RF Power from an Open Waveguide Routed to a Superconducting Cavity “~”JLAB-TN-08-068”~”October”~”2008”~”Haipeng Wang”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1449”~”A STUDY OF BEAM BREAKUP IN 12 GeV UPGRADE WITH DOUBLE BEND ACHROMAT ARC OPTICS”~”JLAB-TN-08-069”~”October”~”2008”~”Ilkyoung Shin and Byung C Yunn”~”ACC”~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1450”~”A Symmetric Ion-Lepton Collider for Jefferson Lab”~”JLAB-TN-08-070”~”November”~”2008”~”S.A. Bogacz, T. Horn, F.J. Klein, P. Nadel-Turonski”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1451”~”Verification of Experimental Results for Waveguide Heating Obtained from Infrared Camera Using Theoretical Results from Ansys”~”JLAB-TN-08-071”~”November”~”2008”~”Hrishikesh Phadke, Edward Daly”~”“~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2008/08-071.docx">http://tnweb.jlab.org/tn/2008/08-071.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1452”~”C50 Cryomodule Magnetic Shielding Design and Analysis”~”JLAB-TN-08-072”~”November”~”2008”~”Gary Cheng, Ed Daly”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1453”~”C50 Cryomodule Cavity Tuner Study Evaluation of Planetary Gear Box Installed on Tuner Mechanism-Part II”~”JLAB-TN-08-073”~”November”~”2008”~”Hrishikesh Phadke, Edward Daly”~”“~”“~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1454”~”Estimate of airborne radioactivity release resulting from fire in an experimental hall”~”JLAB-TN-08-074”~”November”~”2008”~”Keith Welch, Vashek Vylet”~”“~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1455”~”g4beamline and E05-115”~”JLAB-TN-08-075”~”November”~”2008”~”K.B. Beard, Muons, Inc.”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1456”~”Hazard from beam induced RF”~”JLAB-TN-08-076”~”November”~”2008”~”Bob May”~”EHSQ”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1457”~”SHMS Shielding Design”~”JLAB-TN-08-077”~”November”~”2008”~”T. Horn”~”PHY”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1458”~”Multipoles as a function of central magnetic field”~”JLAB-TN-08-078”~”November”~”2008”~”Jay Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1459”~”Hall D optics options “~”JLAB-TN-08-079”~”November”~”2008”~”Jay Benesch and Yves Roblin”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1460”~”J(BdL) curves for CEBAF dipoles from 3D magnetostic models”~”JLAB-TN-08-080”~”November”~”2008”~”Jay Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1461”~”"Banana" magnets for 6 and 12 GeV CEBAF “~”JLAB-TN-08-081”~”November”~”2008”~”Jay Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1462”~”Trapezoidal common dipoles - tilting isn't worth it”~”JLAB-TN-08-082”~”November”~”2008”~”Jay Benesch”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1463”~”Status of "in-house" 9-cell Fabrication and Testing at JLab”~”JLAB-TN-08-083”~”December”~”2008”~”P. Kneisel, G. Ciovati and A. Crawford”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1464”~”In Situ Measurement of the FA Solenoid Coil using Spin Precession”~”JLAB-TN-08-084”~”December”~”2008”~”Joe Grames”~”ACC”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2008/08-084.docx">http://tnweb.jlab.org/tn/2008/08-084.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1465”~”Direct Digital Down/Up Conversion for RF Control of Accelerating Cavities”~”JLAB-TN-08-085”~”December”~”2008”~”C. Hovater, T. Allison, R. Bachimanchi, J. Musson and T. Plawski”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1466”~”Upper limit of the electron beam energy at the CEBAF 2D injector spectrometer and its functionality”~”JLAB-TN-08-086”~”December”~”2008”~”Jonathan Dumas”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1467”~”C100-Cryomodule Waveguide Temperature Profile and Heat Loads for Applied Heat Stations and RF Power”~”JLAB-TN-09-001”~”January”~”2009”~”Hrishikesh Phadke, Edward Daly”~”ENG”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2009/09-001.docx">http://tnweb.jlab.org/tn/2009/09-001.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1468”~”On Niobium in Construction of Cryogenic Pressure Vessel Systems”~”JLAB-TN-09-002”~”January”~”2009”~”Gary Cheng”~”ENG”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1469”~”BBU likelihood study on locating 7-cell cavity cryomodules “~”JLAB-TN-09-003”~”January”~”2009”~”Ilkyoung Shin and Byung C. Yunn”~”ACC”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2009/09-003.docx">http://tnweb.jlab.org/tn/2009/09-003.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1470”~”BBU threshold current study for 6 GeV beam in 12 GeV beamline setup”~”JLAB-TN-09-004”~”January”~”2009”~”Ilkyoung Shin and Byung C. Yunn”~”ACC”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2009/09-004.docx">http://tnweb.jlab.org/tn/2009/09-004.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1471”~”Control Gain Considerations for the 12GeV Upgrade LLRF systems”~”JLAB-TN-09-005”~”January”~”2009”~”Tomasz Plawski”~”ENG”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1472”~”Surface Impedance Characterization System: RF and Calorimeter System Analysis”~”JLAB-TN-09-006”~”February”~”2009”~”Binping Xiao”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1473”~”Addendum to JLAB-TN-07-081, C100 Cryomodule Vacuum Vessel Structural Analysis”~”JLAB-TN-09-007”~”February”~”2009”~”Gary G. Cheng, William R. Hicks, and Edward F. Daly”~”ENG”~”Addendum to <a href="http://tnweb.jlab.org/tn/2007/07-081.pdf">JLAB-TN-07-081</a>.”~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1474”~”Control Gain Considerations for the 12GeV Upgrade LLRF systems: SEL”~”JLAB-TN-09-008”~”February”~”2009”~”Tomasz Plawski”~”ENG”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1475”~”Fabrication of the HG – and LL – 7-cell Cavity Prototpyes”~”JLAB-TN-09-009”~”February”~”2009”~”P. Kneisel, J. Brawley, S. Manning, B. Manus, S. Morgan, G. Slack and L. Turlington”~”ACC”~”Document is dated May 10, 2003”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1476”~”Fast Courant-Snyder Calculations for Transport Line Tuning”~”JLAB-TN-09-010”~”March”~”2009”~”Yves Roblin”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1477”~”Technical Basis for De-Posting Hall C Truck Ramp as Radiologically Controlled Area”~”JLAB-TN-09-011”~”March”~”2009”~”David Hamlette, Keith Welch, Vashek Vylet”~”EHSQ”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1478”~”Technical Note Explaining why beryllium-7 radiological contamination is not considered a hazard with respect to beryllium metal surface contamination “~”JLAB-TN-09-012”~”March”~”2009”~”Bob May”~”EHSQ”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2009/09-012.docx">http://tnweb.jlab.org/tn/2009/09-012.docx</a>.”~”“~”1”~”1”~”“~”“~”“~”“~”“~”“~”“~”

1479”~”Results of Simulation of the Linac-to-Wiggler Transport Using a 1-d CSR Model”~”JLAB-TN-09-013”~”March”~”2009”~”D. Douglas”~”FEL”~”Limited access document, dated March 13, 2009.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1480”~”Effect of Frequency Scaling on Beam Quality Following Compression”~”JLAB-TN-09-014”~”March”~”2009”~”D. Douglas”~”FEL”~”Limited access document, dated March 13, 2009.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1481”~”Revised Specification for HOM Damping in 12 GeV Accelerating Cavities”~”JLAB-TN-09-015”~”March”~”2009”~”G. K. Krafft, I. Shin, and B. Yunn”~”ACC”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2009/09-015.docx">http://tnweb.jlab.org/tn/2009/09-015.docx</a>. Modified April 6, 2009: an executive summary was added for 12 GeV project purposes.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1482”~”Quadrupole Decomposition of the C100 Cavity Accelerating Field”~”JLAB-TN-09-016”~”March”~”2009”~”F. Marhauser, H. Wang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1483”~”Measuring Transport Line Transfer Matrices”~”JLAB-TN-09-017”~”March”~”2009”~”Yves Roblin”~”ACC”~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1484”~”Preliminary Study on the Maximum Surface Magnetic Field Optimization for the APS 3-cell Crab Cavity Design “~”JLAB-TN-09-018”~”March”~”2009”~”Kai Tian, Haipeng Wang”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1485”~”Exit beam shielding for the HKS experiment”~”JLAB-TN-09-019”~”March”~”2009”~”Jay Benesch”~”FEL”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1486”~”The Phase Noise and Jitter Requirements for the CEBAF Master Oscillator”~”JLAB-TN-09-020”~”April”~”2009”~”Curt Hovater”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1487”~”First Results of Transverse Phase Space Tomography in the Jefferson Laboratory FEL Upgrade Driver”~”JLAB-TN-09-021”~”April”~”2009”~”C. Tennant and Y. Roblin”~”ACC”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2009/09-021.docx">http://tnweb.jlab.org/tn/2009/09-021.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1488”~”Performance and configuration of the Hall D fast-feedback system”~”JLAB-TN-09-022”~”April”~”2009”~”Yves Roblin”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1489”~”The Spin Structure of the Proton (Analysis Note)”~”JLAB-TN-09-023”~”April”~”2009”~”Renee Fatemi”~”PHY”~”Originally posted to publications March 2003”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”1

1490”~”Helium target heating and luminosity monitoring”~”JLAB-TN-09-024”~”April”~”2009”~”Eric Voutier, Emilie Penel-Nottaris”~”PHY”~”Originally posted to publications July 2004”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”

1491”~”Deeply Virtual Compton Scattering in Hall A at Jefferson Laboratory”~”JLAB-TN-09-025”~”April”~”2009”~”Astrid Chantelauze”~”PHY”~”Originally posted to publications June 2004”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1492”~”GEp-III BigCal Database”~”JLAB-TN-09-026”~”April”~”2009”~”Arthur Mkrtchyan”~”PHY”~”Originally posted to publications May 2006”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”1

1493”~”CEBAF Upgrade Master Oscillator”~”JLAB-TN-09-027”~”April”~”2009”~”C. Hovater, R. Bachimanchi, J. Musson, T. Plawski”~”ACC”~”“~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

1494”~”Damping Requirements for Longitudinal BBU in 12GeV CEBAF”~”JLAB-TN-09-028”~”May”~”2009”~”L. Harwood, G. A. Krafft, and I. Shin”~”ACC”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2009/09-028.docx">http://tnweb.jlab.org/tn/2009/09-028.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”

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1495”~”C100 Cryomodule Vacuum Vessel Structural Analysis (Addendum)”~”JLAB-TN-09-029”~”May”~”2009”~”Gary Cheng”~”“~”Waiting for file from author.”~”“~”“~”“~”“~”“~”“~”“~”“~”“~”“~”

1496”~”Procedure for Printing Drawings from NX IDEAS 5”~”JLAB-TN-09-030”~”May”~”2009”~”Ron Lassiter, Bridget Paul”~”ENG”~”MS Word 2007 document is at <a href="http://tnweb.jlab.org/tn/2009/09-030.docx">http://tnweb.jlab.org/tn/2009/09-030.docx</a>.”~”“~”“~”1”~”“~”“~”“~”“~”“~”“~”“~”


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