Title |
Other Keywords |
Page |
Longitudinal Kinetic Energy Spread from Focusing in Charged Particle Beams |
electron, focusing, simulation, solenoid |
62 |
- N. Brown, D. Kehne, M. Reiser, D.X. Wang, J.G. Wang (University of Maryland)
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A Numerical Check of the Thermal Wave-Model for Particle-Beam Dynamics |
field, focusing, quadrupole, sextupole |
209 |
- R. Fedele, G. Miele (University of Napoli), F. Galluccio (INFN Napoli)
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Longitudnial Dynamics for Electrons in the Thermal Wave Model for Charged Particle Beams |
damping, emittance, radiation, synchrotron |
212 |
- R. Fedele, G. Miele (University of Napoli), L. Palumbo (University of Roma)
|
|
SRF Cavities for Future Applications |
collider, damping, field, linac |
758 |
|
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A New Surface Treatment for Niobium Superconducting Cavities |
electron, field, gun, vacuum |
798 |
- B. Bonin, C. Antoine, B. Coadou, P. Greiner, C. Henriot, F. Koechlin, E. Lemaitre, J. P. Rodriguez (CE Saclay)
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|
Status of the SSC LEB RF Cavity |
booster, collider, ferrite, field |
824 |
- P. Coleman, F. Brandeberry, C. Friedrichs, Y. Goren, T. Grimm, G. Hulsey, S. Kwiatkowski, A. Propp, L. Taylor, L. Walling (SSCL), J. Averbukh, M. Karliner, V. Petrov, S. Yakovlev (BINP)
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|
Bulk Niobium Low-, Medium-, and High- Superconducting Quarter Wave Resonators for the ALPI Postaccelerator |
accelerator, cryogenics, field, linac |
849 |
- A. Facco (INFN), I. Ben-Zvi (BNL), E. Chiaveri (CERN), J.S. Sokolowski (INFN Legnaro), B.V. Elkonin (Weizmann Inst.)
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|
Thermal Study of HOM Couplers for Superconducting RF Cavities |
field, finite element, impedance, quench |
855 |
- M. Fouaidy, T. Junquera (Institut de Physique Nucleaire d'Orsay), S. Chel, A. Mosnier (CE Saclay)
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|
A World Record Accelerating Gradient in a Niobium Superconducting Accelerator Cavity |
accelerator, cw, field, x-ray |
892 |
- P. Barnes, J. Kirchgessner, D. Moffat, H. Padamsee, J. Sears (Cornell University), J. Graber (DESY)
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|
20 MV/m Accelerating Gradient with Heat Treatment of a Six Cell, 1.5 GHz Cavity for TESLA |
alignment, coupling, electron, field |
921 |
- J. Kirchgessner, P. Barnes, W. Hartung, D. Moffat, H. Padamsee, D. Rubin, J. Sears, M. Tigner (Cornell University), M. Hiller (Babcock & Willcox), D. Saraniti (SLAC), Q.S. Shu (SSCL)
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|
Performance of a CEBAF Production Cavity After High-Temperature Heat Treatment |
accelerator, coupling, electron, field |
927 |
- P. Kneisel, M.G. Rao (CEBAF)
|
|
The Design of a Pill-Box Cavity with Waveguide HOM Supressors |
damping, spectrum, vacuum, waveguide |
953 |
- A. Massarotti, G. D'Auria, A. Fabris, C. Pasotti, C. Rossi, M. Svandrlik (Sincrotrone Trieste)
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|
Cryostat for a Beam Test with the CESR-B Cavity |
beamline, radiation, vacuum, waveguide |
995 |
- E. Nordberg, P. Barnes, R. Ehrlich, J. Kirchgessner, D. Metzger, D. Moffat, H. Muller, H. Padamsee, J. Sears, K. She, M. Tigner (Cornell University), W. Fox (LANL), H. Heinrichs (U. Wuppertal)
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|
Fabrication of the APS Storage Ring Radio Frequency Accelerating Cavities |
accelerator, electron, photon, vacuum |
1013 |
- K. Primdahl, J. Bridges, F. Depaola, R. Kustom (ANL), D. Snee (FNAL)
|
|
L-Band Superconducting Cavities at KEK for TESLA |
collider, field, laser, quench |
1024 |
- K. Saito, E. Kako, S. Noguchi, M. Ono, T. Shishido, T. Tajima (KEK), M. Matsuoka (Mitsubishi Heavy Industries), H. Miwa, T. Suzuki (Nomura Plating Co.), H. Umezawa (Tokyo Denkai Co.)
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|
Design of a High-Power Test Model of the PEP-II RF Cavity |
coupling, field, vacuum, waveguide |
1039 |
- H.D. Schwarz, R.A. Bell, J.A. Hodgson, J.G. Judkins, K. Ko, C.K. Ng, R.P. Pendleton, K. Skarpaas (SLAC), F.P. Adams, M.G. Lipsett, W. Mellors, T. Tran-Ngoc, M.S. de Jong (AECL), G. Lambertson, R. Rimmer (LBNL), N. Kroll (UCSD/SLAC)
|
|
Performance of a 1500 MHz Niobiuim Cavity with 2K-LHe Channel Cooling |
accelerator, diagnostics, electron, field |
1060 |
- J. Susta, P. Kneisel, M. Wiseman (CEBAF)
|
|
Accelerating Frequency Shift Minimization |
accelerator, coupling, cw, impedance |
1069 |
- A.V. Tiunov, V.I. Shvedunov (INP Moscow)
|
|
Study on TESLA Cavity Shape |
coupling, electron, field, tune |
1095 |
- D. Zu, J. Chen (Bejing U.)
|
|
The Workshop of Microwave-Absorbing Materials for Accelerators |
accelerator, dielectric, electron, vacuum |
1115 |
|
|
Window Design with MAFIA |
cw, dielectric, simulation, waveguide |
1133 |
- W. Bruns, H. Henke, B. Littmann, R. Lorenz (TU Berlin)
|
|
The Design and Production of the Higher-Order-Mode Loads for CEBAF |
accelerator, dielectric, electron, vacuum |
1220 |
- I.E. Campisi, A. Betto, B.H. Branson, A.M. Johnson, L.K. Summers (CEBAF)
|
|
A High Power Water Cooled Resistor for the High Voltage Power Supply in the TRIUMF RF System |
cooling water, cyclotron |
1300 |
- K. Jensen, G. Blaker, R. Kuramoto (TRIUMF)
|
|
Superconducting Cavity Tuner Performance of CEBAF |
accelerator, cryomodule, electron, resonance |
1396 |
- J. Marshall, J. Preble, W. Schneider (CEBAF)
|
|
An Experiemental and Analytical Study of a Buoyancy Driven Cooling System for a Particle Accelerator |
accelerator, collider, ferrite, radio-frequency |
1402 |
- B. Campbell, R. Ranganathan (SSCL)
|
|
Collider Bypass Diode Thermal Simulations and Measurements for the SSCL |
cathode, collider, quench, simulation |
1405 |
- C. Rostamzadeh, G. Tool (SSCL)
|
|
A Conceptual Design and Thermal Analysis of High Heat Load Crotch Absorber |
electron, photon, radiation, x-ray |
1497 |
- I.C. Sheng, J. Howell, E. Rotela, S. Sharma (ANL)
|
|
Thermal Analysis of the Beam Missteering in APS Storage Ring |
finite element, photon, positron, x-ray |
1500 |
- I.C. Sheng, J. Howell, S. Sharma (ANL)
|
|
Proton Linacs for Boron Neutron Capture Therapy |
accelerator, neutron, proton, target |
1756 |
|
|
DA NE Interaction Region Design |
coupling, field, quadrupole, solenoid |
2048 |
- M. Bassetti, M.E. Biagini, C. Biscari, M.A. Preger, G. Raffone, G. Vignola (INFN-LNF)
|
|
Design of a New Generation of Collimators for LEP 200 |
cooling water, radiation, synchrotron, vacuum |
2202 |
- R. Jung, R. Perret, R. Valbuena (CERN)
|
|
Insulating and Metal-Ceramic Materials for Particle Accelerators |
accelerator, dielectric, radiation, vacuum |
2208 |
- Yu. P. Severgin, M.Z. Filimonov (Efremov Institute)
|
|
Horizontal Movement of the Storage Ring Floor at the Photon Factory |
factory, laser, photon, simulation |
2260 |
- T. Katsura, H. Nakamura (KEK), Y. Fujita (Shimizu Corp.), Y. Kamiya (U. Tokyo)
|
|
An Electrostatic Sweep Plate Device for Emittance Measurement of Ion Beams to 2 MeV |
accelerator, emittance, field, ion |
2420 |
- T.W. Debiak, I. Birnbaum, R. Heuer, J. Porter (Grumman Corporation)
|
|
Knife-Edge Thin Film Field Emission Cathodes |
bunching, electron, field, vacuum |
2705 |
- B. Lee, H.P. Demroff, M.M. Drew, T.S. Elliott, T.K. Mazumdar, P.M. McIntyre, Y. Pang, D.D. Smith, H.-J. Trost (Texas A&M)
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|
Study of Porous Silicon Morphologies for Electron Transport |
electron, field, ion, vacuum |
2711 |
- Y. Pang, H.P. Demroff, T.S. Elliott, B. Lee, J. Lu, V.B. Madduri, T.K. Mazumdar, P.M. McIntyre, D.D. Smith, H.-J. Trost (Texas A&M)
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|
Collider Scenario Implications of ASST Operation |
accelerator, collider, commissioning, quench |
2757 |
- A.D. McInturff, W. Burgett, M. Christianson, T. Dombeck, J. Gannon, D. Haenni, P. Kraushaar, M. Levin, M. McAshan, G. Mulholland, D. Murray, W. Robinson, T. Savord, R. Smellie, F. Spinos, G. Tool, J. Weisend II, J. Zatopek (SSCL)
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|
Fermilab-Built SSC Collider Dipoles Using Low Temperature Curing Insulation Systems with and without Glass Tape |
accelerator, collider, field, quench |
2769 |
- T.S. Jaffery, R. Coombes, A. Devred, J. DiMarco, T. Ogitsu, R.E. Sims, J.C. Tompkins, M. Wake (SSCL), R. Bossert, J. Carson, S.W. Delchamps, I Gonczy, S. Gourlay, R. Hanft, M.J. Lamm, P. Mazur, D. Orris, J. Strait (FNAL)
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|
Quench and Quench Protection for the SSC Collider Correctors |
collider, field, quench, simulation |
2775 |
|
|
Quench Simulations of the 40 mm Aperture SSC-Quadrupole Magnet Connected in Series with 50 mm Aperture SSC-Dipole Magnets |
collider, field, quadrupole, quench |
2784 |
|
|
Effective Stress of the SSC 80 K Synchrotron Radiation Liner in a Quenching Dipole Magnet |
collider, finite element, radiation, synchrotron |
2787 |
- K.K. Leung, Q.S. Shu, K. Yu, J. Zbasnik (SSCL)
|
|
A Mechanical System for the Positioning of Accelerator Magnets |
accelerator, alignment, lattice, optics |
2913 |
- R. Viola, R. Martin (SSCL)
|
|
Thermal Modeling of Cryogenic Accelerator Structures |
accelerator, radiation, software, waveguide |
2953 |
- H. Muller, J. Kirchgessner, P. Smith, D. Walend (Cornell University)
|
|
Beam Raster System at CEBAF |
field, resonance, spectrum, target |
3103 |
- C. Yan, J. Beaufait, P. Brindza, R. Carlini, W. Vulcan, R. Wines (CEBAF)
|
|
Monitoring Production Target Thickness |
monitoring, muon, target, vacuum |
3106 |
|
|
Initial Operation of the CW 8X H- Ion Source Discharge |
cathode, cw, field, ion |
3172 |
- H.V. Smith, P. Allison, C. Geisik, D.R. Schmitt, J.D. Schneider, J.E. Stelzer (LANL)
|
|
K+ Ion Source for the Heavy Ion Induction Linac System Experiment ILSE |
emittance, extraction, ion, linac |
3199 |
- S. Eylon, W. W. Chupp, E. Henestroza, S. Yu (LBNL)
|
|
Vacuum Chamber and Crotch Absorber for the SPring-8 Storage Ring Vacuum System |
ion, photon, radiation, vacuum |
3845 |
- K. Watanabe, S.H. Be, Y. Oikawa, H.A. Sakaue, Y. Wang, C.Y. Xu, S. Yokouchi (JAERI-RIKEN), Y. Yanagi (Hitachi Ltd.), M. Tsuchiya (IHI Japan), S. Takahashi (Kobe Steel)
|
|
Test Fabrication of a Copper Beam Duct for the KEK B-Factory |
photon, radiation, synchrotron, vacuum |
3860 |
- Y. Suetsugu, K. Kanazawa (KEK)
|
|
Theoretical and Experimental Study of Sorption Processes on Non Evaporable Getters St 707 |
background, induction, spectrum, vacuum |
3873 |
- J. Miertusova, F. Daclon (Sincrotrone Trieste)
|
|
The Heat Load of an 80 K Liner for the SSC |
collider, insertion, radiation, synchrotron |
3879 |
- J. Maddocks, A. Yücel (SSCL)
|
|
Overview of an 80 K Liner Design for Synchrotron Light Interception in SSCL Collider |
accelerator, collider, radiation, synchrotron |
3888 |
- Q.S. Shu, W. Chou, D. Clark, W. Clay, Y. Goren, R. Kersevan, V. Kovachev, P. Kraushaar, K. Leung, J. Maddocks, D. Martin, D. Meyer, R. Mihelic, G. Morales, J. Simmons, G. Snitchler, M. Tuli, W. Turner, L. Walling, K. Yu, J. Zbasnik (SSCL)
|
|
Thermal Model and Associated Novel Approach for Synchrotron Radiation Liner with End Cooling |
accelerator, quadrupole, radiation, synchrotron |
3891 |
- Q.S. Shu, W. Clay, J. Maddocks, G. Morales, K. Yu, J. Zbasnik (SSCL)
|
|
Design of ECR Ion Source Vacuum Systems |
electron, ion, plasma, vacuum |
3894 |
|
|
What Joining Method for the New Generation of Accelerators (SSC and LHC) |
accelerator, collider, field, vacuum |
3900 |
- R. Gillier (Helicoflex), M. Lefrancois, J. Montuclard, Ch. Rouaud (LeCarbone-Lorraine France)
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