Paper |
Title |
Other Keywords |
Page |
SRF93A01 |
Superconducting RF Development at ATLAS
|
linac, ATLAS, niobium, ion |
1 |
|
- K.W. Shepard, B.E. Clifft, M. Kedzie
ANL, Argonne
- P.N. Potukuchi, A. Roy
Nuclear Science Centre, New Delhi
- K. Crandall, J. Givens, J. Potter
AccSys Technology Inc., Pleasanton, California
- N. Added
University of São Paulo, São Paolo
|
|
SRF93A02 |
Development of High-Current Superconducting Accelerators at Argonne National Laboratory
|
linac, rfq, focusing, quadrupole |
11 |
|
- J.R. Delayen, C.L. Bohn, W.L. Kennedy, B.J. Micklich, C.T. Roche, L. Sagalovsky
ANL, Argonne
|
|
SRF93A04 |
Progress in RF Superconductivity at Saclay
|
accelerating-gradient, superconducting-cavity, superconductivity, linac |
28 |
|
- B. Bonin
CEN-Saclay, Gif-Sur-Yvette
|
|
SRF93A05 |
Status Report: SRF Activities at CEBAF
|
cryomodule, CEBAF, linac, HOM |
33 |
|
- J. Mammosser
CEBAF, Newport News, Virginia
|
|
SRF93A06 |
Status of the RF Superconductivity at CERN
|
HOM, LEP, CERN, vacuum |
49 |
|
- G. Cavallari, C. Arnaud, M. Barranco-Luque, C. Benvenuti, Ph. Bernard, D. Bloess, D. Boussard, P. Brown, S. Calatroni, E. Chiaveri, E. Ciapala, G. Geschonke, D. Güsewell, E. Haebel, N. Hilleret, G. Orlandi, G. Passardi, E. Peschardt, V. Rödel, T. Schiller, M. Taufer, J. Tückmantel, J. Uythoven, W. Weingarten
CERN, Geneva
|
|
SRF93A07 |
Superconducting RF Activities at Cornell University
|
vacuum, TESLA, factory, HOM |
67 |
|
- J. Kirchgessner, K. Akai, P. Barnes, C. Crawford, T. Flynn, W. Fox, J. Graber, W. Hartung, T. Hays, M. Klauda, J. Knobloch, A. Matheisen, D. Metzger, D. Moffat, W. Möller, H. Muller, E. Nordberg, H. Padamsee, M. Pekeler, P. Schmüser, J. Sears, M. Tigner, A. Tribendis, V. Vescherevich
Cornell University, Ithaca
|
|
SRF93A08 |
Laboratory Report - DESY
|
vacuum, TESLA, HOM, klystron |
77 |
|
- D. Proch, B. Dwersteg, G. Kreps, A. Matheisen, W.D. Möller, D. Renken, J. Sekutowicz, W. Singer
DESY, Hamburg
|
|
SRF93A09 |
The INFN-CERN Collaboration on RF Superconductivity: An Overview on the Main Activities of the Collaboration
|
niobium, CERN, laser, impedance |
99 |
|
- R. Parodi
INFN Genova, Genova
|
|
SRF93B01 |
RF SC Activities at Frascati INFN Laboratories
|
cathode, electron, TESLA, CERN |
106 |
|
- F. Tazzioli, M. Castellano, M. Ferrario, S. Kulinski, M. Minestrini, P. Patteri
INFN/LNF, Frascati (Roma)
- L. Catani, S. Tazzari
INFN-Roma II, Roma
|
|
SRF93B02 |
Superconducting RF Activity at L.N.L.
|
linac, niobium, controls, cryogenics |
110 |
|
- A.M. Porcellato, G. Bisoffi, G.P. Buso, F. Chiurlotto, S. Gustafsson, A. Facco, M. Morvillo, V. Palmieri, V.L. Ruzinov, J.S. Sokolowski, S.Yu. Stark, G. Bassato, A. Battistella, M. Bellato, S. Canella, M. Cavenago, M.F. Cervellera, A. Dainelli, P. Favaron, G. Fortuna, A. Lombardi, M.F. Moisio, R. Pengo, M. Poggi, G. Ziomi
INFN/LNL, Legnaro, Padova
|
|
SRF93B04 |
Activities of RF Superconductivity at KEK
|
radiation, KEK, HOM, electron |
131 |
|
- T. Furuya, K. Akai, K. Asano, K. Hara, K. Hosoyama, A. Kabe, E. Kako, Y. Kojima, K. Kubo, S. Mitsunobu, H. Nakai, S. Noguchi, K. Saito, Y. Sakamoto, T. Shishido, T. Tajima, T. Takahashi
JAERI, Ibaraki-ken
|
|
SRF93B05 |
Status of RF Superconductivity at Los Alamos National Laboratory
|
niobium, light-ion, ion, superconducting-cavity |
145 |
|
- B. Rusnak, J.N. DiMarco, E.R. Gray, R.G. Maggs, A.H. Shapiro, G. Spalek, H.A. Thiessen
LANL, Los Alamos
|
|
SRF93B06 |
Laboratory Activities on RF Superconductvity at Peking University
|
superconducting-cavity, gun, electron, ion |
153 |
|
- K. Zhao, C. Chen, R. Geng, J. Song, L. Wang, Q. Wang, T, Wang, G. Wu, J. Yu, B. Zhang
Peking University, Beijing
|
|
SRF93B08 |
The Superconducting Separated - Orbit Cyclotron TRITRON
|
cyclotron, vacuum, ion, injection |
167 |
|
- U. Trinks, P. Schütz
TU München, Garching
|
|
SRF93B09 |
Activities on RF Superconductivity at the University of Wuppertal
|
linac, neutron, superconductivity, niobium |
173 |
|
- H. Heinrichs, D. Busch, W. Diete, B. Fischer, M. Getta, W. Görlich, M. Hein, S. Hensen, T. Hödtke, F. Hill, A. Knuth, H.-G. Kürschner, B. Lehndorff, M. Lenkens, E. Mahner, N. Minatti, G. Müller, Ch. Murek, S. Orbach, H. Piel, J. Pouryamout, N. Pupeter, D. Reschke, R.W. Röth, H. Schlick, M. Strupp, D. Wehler
University of Wuppertal, Wuppertal
|
|
SRF93C01 |
Status and Applications of β=1 Superconducting Cavities
|
niobium, superconductivity, CEBAF, superconducting-cavity |
180 |
|
- B. Bonin
CEN-Saclay, Gif-sur-Yvette
|
|
SRF93C02 |
Performance of SRF Systems in Large Scale Applications
|
controls, CEBAF, linac, vacuum |
198 |
|
- J.C. Hovater
CEBAF, Newport News, Virginia
|
|
SRF93C04 |
Microscopic Studies of Field Emission From RF Cavity Surfaces
|
site, electron, superconductivity, LEFT |
236 |
|
- R.J. Noer
Carleton College, Northfield
|
|
SRF93D02 |
An Update on Windows, Couplers, Higher-Order-Mode Damping, and Interlocks
|
electron, vacuum, CEBAF, HOM |
267 |
|
- L. Phillips
CEBAF, Newport News, Virginia
|
|
SRF93D03 |
Experience with Control of Frequency, Amplitude, and Phase
|
controls, CEBAF, interlocks, linac |
294 |
|
- S.N. Simrock
CEBAF, Newport News, Virginia
|
|
SRF93D04 |
High - Tc Materials for Microwave Applications: Update, Progress, and Trends
|
impedance, superconductivity, niobium, coupling |
307 |
|
- C. Liang
CEBAF, Newport News, Virginia
|
|
SRF93E01 |
The Use of Superconducting RF for High Current Applications
|
HOM, factory, damping, KEK |
331 |
|
- J. Kirchgessner
Cornell University, Ithaca
|
|
SRF93E02 |
Superconducting Cavities for Neutron Spallation Sources and other High Intensity Proton Accelerators
|
linac, proton, neutron, beam-losses |
338 |
|
|
|
SRF93F01 |
TESLA Activities at KEK
|
niobium, KEK, superconducting-cavity, vacuum |
372 |
|
- K. Saito, Y. Funahashi, H. Inoue, E. Kako, S. Noguchi, M. Ono, T. Shishido
KEK, Ibaraki-ken
- P. Kneisel
CEBAF, Newport News, Virginia
- M. Matsuoka
MHI, Kobe
- H. Miwa, T. Suzuki
Nomura Plating Co. Ltd., Tochigi-ken
- H. Umezawa
Tokyo Denkai Co. Ltd., Tokyo
|
|
SRF93G01 |
The TESLA Cavity: Design Considerations and RF Properties
|
HOM, TESLA, coupling, dipole |
382 |
|
|
|
SRF93G02 |
Mechanical Characteristics of the RF Cavity for the TESLA Test Facility
|
DESY, TESLA, TTF, niobium |
398 |
|
|
|
SRF93G03 |
Input Coupler and Windows for TESLA
|
DESY, vacuum, TESLA, simulation |
406 |
|
- M. Champion
Fermilab, Batavia, Illinois
|
|
SRF93G04 |
Higher Order Mode Coupler for TESLA
|
HOM, TESLA, electron, damping |
426 |
|
- J. Sekutowicz
DESY, Hamburg
|
|
SRF93G05 |
The TTF Cryosat Design Report
|
vacuum, TESLA, quadrupole, target |
440 |
|
- F. Alessandria, F. Castagna
INFN-Milano, Milano
- T. Nicol
Fermilab, Batavia, Illinois
- S. Tazzari, M. Ferrario, M. Minestrini
INFN/LNF, Frascati (Roma)
- L. Catani
INFN-Roma II, Roma
|
|
SRF93H01 |
The TESLA Refrigeration System
|
TESLA, cryogenics, vacuum, quadrupole |
451 |
|
|
|
SRF93H02 |
RF Generation and Control for the TESLA Test Facility
|
klystron, TESLA, cathode, injection |
492 |
|
|
|
SRF93H03 |
Review of Various Approaches and Successes for High Gradients and Q's for TESLA
|
TESLA, CEBAF, site, CERN |
515 |
|
- H. Padamsee
Cornell University, Ithaca
|
|
SRF93I04 |
Preliminary Statistical Analysis of CEBAF's Cavity Pair Assembly Process Data
|
CEBAF, vacuum, ion, superconductivity |
581 |
|
- J.F. Benesch
CEBAF, Newport News, Virginia
|
|
SRF93I05 |
Artificial Dielectric Ceramics for CEBAF's Higher-Order-Mode Loads
|
HOM, vacuum, CEBAF, superconducting-cavity |
587 |
|
- I.E. Campisi, A. Betto, B.H. Branson, L.K. Summers
CEBAF, Newport News, Virginia
|
|
SRF93I07 |
CEBAF Cryomodule Commissioning in the South Linac
|
cryomodule, radiation, linac, CEBAF |
610 |
|
- M. Drury, H. Lankford, T. Lee, J. Marshall, J. Preble, Q. Saulter, W.J. Schneider, M. Spata, M. Wiseman
CEBAF, Newport News, Virginia
|
|
SRF93I08 |
Additional Losses in High Purity Niobium Cavities Related to Slow Cooldown and Hydrogen Segregation
|
niobium, superconductivity, lattice, cryogenics |
617 |
|
- J. Halbritter
KfK, Karlsruhe
- P. Kneisel
CEBAF, Newport News, Virginia
- K. Saito
KEK, Ibaraki-ken
|
|
SRF93I09 |
Experience with High Pressure Ultrapure Water Rinsing of Niobium Cavities
|
niobium, CEBAF, accelerating-gradient, radiation |
628 |
|
- P. Kneisel, B. Lewis, L. Turlington
CEBAF, Newport News, Virginia
|
|
SRF93I10 |
Photoemission Phenomena on CEBAF RF Windows at Cryogenic Temperatures
|
electron, vacuum, CEBAF, cryogenics |
637 |
|
- T. Powers, P. Kneisel, M. Vaidya
CEBAF, Newport News, Virginia
|
|
SRF93I12 |
Production Vertical Cavity Pair Testing at CEBAF
|
controls, CEBAF, cryogenics, vacuum |
650 |
|
- C. Reece, P. Kushnick, J. Mammosser, T. Powers
CEBAF, Newport News, Virginia
|
|
SRF93I13 |
Anomalous Q0 Results in the CEBAF South Linac
|
cryomodule, linac, CEBAF, resonance |
659 |
|
- W.J. Schneider, M. Drury, J. Preble
CEBAF, Newport News, Virginia
|
|
SRF93I14 |
Progress on the Industrial Production of SC Cavities at CERCA
|
CERN, LEP, TESLA, superconducting-cavity |
670 |
|
- P. Maccioni, J.L. Boutes
CERCA, Romans-Sur-Isère
|
|
SRF93I15 |
Niobium Coatings for 1.5 GHz RF Cavities
|
cathode, LEP, niobium, CERN |
676 |
|
- C. Benvenuti, S. Calatroni, M. Hauer, G. Orlandi, F. Scalambrin
CERN, Geneva
|
|
SRF93I16 |
Influence of Copper Substrate Treatments on Properties of Niobium Coatings
|
niobium, CERN, LEP, electron |
687 |
|
- S. Calatroni, J.P. Bacher, C. Benvenuti, R. Cosso, J.M. Dalin, J. Guérin, D. Lacarrère, A. Lasserre, G. Orlandi, E. Radicioni, F. Scalambrin, M. Taufer
CERN, Geneva
|
|
SRF93I17 |
First Operational Experience in Running a New 6 kW Cryoplant Cooling Superconducting Cavities in LEP at 4.5 K
|
LEP, controls, CERN, cryogenics |
696 |
|
- Ph. Gayet, M. Barranco-Luque, W.K. Erdt, P.K. Frandsen, D. Güsewell, N.O. Solheim, G. Winkler
CERN, Geneva
|
|
SRF93I18 |
An Instrument for Internal Surface Analysis of LEP 200 Superconducting Radiofrequency Cavities
|
electron, CERN, vacuum, radio-frequency |
702 |
|
- D. Lacarrère, C. Benvenuti, R. Cosso, G. Foffano, J. Genest, M. Hauer, D. Jegou, D. Latorre, I. Magnani, A. Rijllart, R. Saban, F. Scalambrin
CERN, Geneva
|
|
SRF93I19 |
Expected Dependence of Nb-Coated RF Cavity Performance on the Characteristics of Niobium
|
electron, LEP, cathode, niobium |
718 |
|
- G. Orlandi, C. Benvenuti, S. Calatroni, F. Scalambrin
CERN, Geneva
|
|
SRF93I20 |
High Power Testing of Superconducting Cavities for LEP
|
vacuum, LEP, radiation, klystron |
730 |
|
- J. Uythoven, P. Brown, A. Butterworth, E. Ciapala, G. Geschonke, E. Peschardt
CERN, Geneva
|
|
SRF93I21 |
Superconducting Hydroformed Niobium Sputter Coated Copper Cavities at 1.5 GHz
|
cathode, electron, niobium, accelerating-gradient |
739 |
|
- Ph. Bernard, W. Weingarten, D. Bloess, E. Chiaveri, C. Hauviller, T. Schiller, M. Taufer
CERN, Geneva
- P. Bosland
CEN-Saclay, Gif-Sur-Yvette
- A. Caruette, M. Fouaidy, T. Junquera
IPN, Orsay
|
|
SRF93I22 |
Industrial Production of Superconducting Niobium Sputter Coated Copper Cavities for LEP
|
CERN, niobium, electron, LEP |
746 |
|
- W. Weingarten, E. Chiaveri
CERN, Geneva
|
|
SRF93I23 |
Microscopic Examination and Elemental Analysis of Field Emission Sites in 5.8 GHz Superconducting Mushroom Cavities
|
site, electron, background, DESY |
750 |
|
- T. Hays, M. Klauda, J. Knobloch, D. Moffat, H. Padamsee
Cornell University, Ithaca
- S. Durbin, M. Gray
Carleton College, Northfield
|
|
SRF93I24 |
On Reaching 25 MV/m Accelerating Using High Pulsed Power RF Processing 1.3 GHz, 5-cell TESLA Cavities
|
klystron, vacuum, TESLA, pulsed-power |
763 |
|
- C. Crawford, J. Graber, T. Hayes, J. Kirchgessner, A. Matheissen, W. Moller, H. Padamsee, M. Pekeler, P. Schmüser, M. Tigner
Cornell University, Ithaca
|
|
SRF93I25 |
A Summary of High Peak Power (HPP) RF Processing Studies of 3 GHz Niobium Accelerator Cavities
|
site, vacuum, simulation, accelerating-gradient |
776 |
|
- J. Graber, C. Crawford, J. Kirchgessner, H. Padamsee, D. Rubin, P. Schmüser
Cornell University, Ithaca
|
|
SRF93I26 |
A New Limit to the Maximum RF Magnetic Field for Niobium
|
niobium, DESY, coupling, simulation |
794 |
|
- J. Graber, N. Black, H. Padamsee, M. Pekeler
Cornell University, Ithaca
|
|
SRF93I27 |
Development of Production Technology for Weldless Copper Shells of SC Cavities
|
status, DESY, collider, cryogenics |
802 |
|
- L.M. Sevryukova, A.I. Ageev, V.V. Alimov, O.A. Voinalovich
IHEP Protvino, Protvino
|
|
SRF93I28 |
Feasibilities of the Methods of Anode Oxipolishing and Anodization in the Technology of Superconducting Cavities
|
ion, vacuum, scattering, electron |
809 |
|
- L.M. Sevryukova, A.M. Korotkov, S.M. Pesterev
IHEP Protvino, Protvino
|
|
SRF93I29 |
Microwave Performances of Two Cavities Fully Coated by YBCO
|
superconducting-cavity, impedance, electron, electromagnetic-fields |
838 |
|
- R. Parodi, P. Fabbricatore, G. Gemme, R. Musenich, Bi Zhang
INFN Genova, Genova
|
|
SRF93I30 |
Results of New Measurements on the 80 MHz Bulk-Niobium Resonator
|
niobium, resonance, vacuum, pick-up |
846 |
|
- A. Facco, J.S. Sokolowski
INFN/LNL, Legnaro, Padova
|
|
SRF93I31 |
Longitudinal Dynamics of Trains of Bunches in Accelerating Structures
|
space-charge, beam-loading, focusing, higher-order-mode |
851 |
|
- F. Tazzioli, M. Ferrario
INFN/LNF, Frascati (Roma)
- L. Serafini
INFN-Milano, Milano
|
|
SRF93I32 |
Seamless 1.5 GHz Cavities Obtained by Spinning a Circular Blank of Copper or Niobium
|
niobium, electron, controls, vacuum |
857 |
|
- V. Palmieri, R. Preciso, V.L. Ruzinov, S.Yu. Stark
INFN/LNL, Legnaro, Padova
|
|
SRF93I33 |
New Results on Niobium-Sputtered Copper Quarter Wave Resonators
|
niobium, ion, cathode, plasma |
868 |
|
- V. Palmieri, L. Badan, F. Chiurlotto, M. Morvillo, A.M. Porcellato, R. Preciso, V.L. Ruzinov, S.Yu. Stark
INFN/LNL, Legnaro, Padova
|
|
SRF93I34 |
Preliminary Results of the JAERI FEL Superconducting Accelerator Modules and their Cryogenic System
|
JAERI, FEL, cryogenics, electron |
886 |
|
- E.J. Minehara, R. Kato, R. Nagai, M. Ohkubo, M. Sawamura, M. Sugimoto, Y. Suzuki, M. Takao
JAERI, Ibaraki-ken
- Y. Kawarasaki, J. Sasabe
Hamamatsu Photonics Co., Research Center, Shizuoka-ken
- N. Kikuzawa
Kyushu University, Fukuoka-ken
|
|
SRF93I35 |
RF Performances of Superconducting Resonators for the JAERI Tandem Booster
|
JAERI, booster, niobium, gun |
895 |
|
- M. Shibata, T. Ishii, S. Kanazawa, Y. Sugiyama, S. Takeuchi, T. Yoshida
JAERI, Ibaraki-ken
|
|
SRF93I36 |
Performance Recovery of the TRISTAN Superconducting RF Cavities
|
vacuum, superconducting-RF, KEK, electron |
900 |
|
- K. Asano, T. Furuya, S. Mitsunobu, T. Tajima, T. Takahashi
KEK, Ibaraki-ken
|
|
SRF93I37 |
Test Results on High Gradient L-Band Superconducting Cavities
|
niobium, vacuum, electron, accelerating-gradient |
918 |
|
- E. Kako, S. Noguchi, M. Ono, K. Saito, T. Shishido, T. Tajima
KEK, Ibaraki-ken
- P. Kneisel
CEBAF, Newport News, Virginia
- M. Matsuoka
MHI, Kobe
- H. Miwa, T. Suzuki
Nomura Plating Co. Ltd., Tochigi-ken
- H. Umezawa
Tokyo Denkai Co. Ltd., Tokyo
|
|
SRF93I38 |
Evaluation of Dust Particles in the KEK Clean Room and Cleaning Methods Used for SC Cavity Assembly
|
KEK, gun, laser, vacuum |
944 |
|
- T. Tajima
KEK, Ibaraki-ken
- H. Miwa
Nomura Plating Co. Ltd., Tochigi-ken
- H. Ohta
Hitachi Electronics Engineering Co., Ltd, Tokyo
|
|
SRF93I39 |
Development of HOM Absorber for KEK B-Factory SC Cavities
|
HOM, KEK, vacuum, factory |
962 |
|
- T. Tajima, K. Asano, T. Furuya, S. Mitsunobu, T. Takahashi
KEK, Ibaraki-ken
- Y. Ishi, Y. Kijima
Mitsubishi Electric Corporation, Kobe-shi
- M. Kudo, N. Taniyama
Micro Denshi Co., Ltd., Saitama
|
|
SRF93I40 |
Fault-Tolerant Superconducting Linac Design for a 5-MW Neutron Spallation Source
|
linac, proton, emittance, neutron |
981 |
|
- G.R. Swain
LANL, Los Alamos
|
|
SRF93I41 |
Study of Superconducting Films for Accelerating Cavity Applications by a Microstrip Resonator Technique
|
CERN, impedance, DESY, coupling |
993 |
|
- R. Vaglio, A. Andreone, A. Cassinese, A. DiChiara
Università di Napoli Frederico II, Napoli
- C. Attanasio, L. Maritato
Università di Salerno, Salerno
|
|
SRF93I42 |
Activities on Cryostats and SRF Cavities at the IPN ORSAY Laboratory
|
HOM, niobium, radiation, cryogenics |
1002 |
|
- S. Buhler, A. Caruette, M. Fouaidy, T. Junquera
IPN, Orsay
|
|
SRF93I43 |
Field Emission in RF Cavities: Observation of Light Spots at High Electric Fields
|
electron, radiation, vacuum, laser |
1014 |
|
- T. Junquera, A. Le Goff
IPN, Orsay
- B. Bonin, H. Safa, J. Tan
CEN-Saclay, Gif-Sur-Yvette
|
|
SRF93I44 |
Long Term Performance on the Superconducting Cavities of the Saclay Heavy Ion Linac
|
linac, vacuum, multipactoring, cryogenics |
1020 |
|
- B. Cauvin, M. Desmons, J. Girard, P. Letonturier
CEN-Saclay, Gif-Sur-Yvette
|
|
SRF93I45 |
NbTiN Thin Films for RF Applications
|
niobium, cathode, ion, superconductivity |
1028 |
|
- P. Bosland, S. Cantacuzène, J. Gobin, M. Juillard, J. Martignac
CEN-Saclay, Gif-Sur-Yvette
|
|
SRF93I46 |
Field Emission Studies at Saclay
|
electron, site, cathode, niobium |
1033 |
|
- B. Bonin
CEN-Saclay, Gif-Sur-Yvette
|
|
SRF93I47 |
A Statistical Analysis of the Risk of Dust Contamination During Assembly of RF Superconducting Cavities
|
electron, superconducting-cavity, niobium, cathode |
1047 |
|
- C.Z. Antoine
CEN-Saclay, Gif-Sur-Yvette
|
|
SRF93I49 |
Evolution of the RF Systems Layout for the SSC Collider Rings
|
collider, CERN, klystron, superconducting-cavity |
1065 |
|
- G. Schaffer
Superconducting Supercollider Laboratory, Dallas
|
|
SRF93I50 |
Superconducting Billiard Cavities - a Non-Accelerator Application of RF Superconductivity
|
resonance, superconductivity, CERN, DESY |
1079 |
|
- P. Schardt, H. Alt, H.-D. Gräf, R. Hofferbert, A. Richter
TH Darmstadt, Darmstadt
- H.L. Harney, C.H. Lewenkopf, H.A. Weidenmüller
Maz-Planck-Institut für Kernphysik, Heidelberg
- H. Lengeler
CERN, Geneva
- C. Rangacharyulu
University of Saskatchewan, Saskatchewan
|
|
SRF93I51 |
Effect of Chemical Polishing on the Electron Field Emission of Niobium Samples and Cavities
|
site, niobium, electron, cathode |
1085 |
|
- E. Mahner, N. Pupeter, G. Müller
University of Wuppertal, Wuppertal
- P. Kneisel
CEBAF, Newport News, Virginia
|
|
SRF93I52 |
Detailed Studies of Anomalous Loss Mechanisms in S.C. 3 GHz Single-cell Cavities at Epeak up to 70 MV/m and Q0 up to 7-10 10
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vacuum, niobium, electron, TESLA |
1095 |
|
- D. Reschke, W. Görlich, G. Müller, H. Piel, J. Pouryamout, R.W. Röth
University of Wuppertal, Wuppertal
|
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SRF93I53 |
Accelerating Gradients Above 15MV/m in 3GHz Nine -Cell Structures
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vacuum, niobium, diagnostics, accelerating-gradient |
1109 |
|
- D. Reschke, G. Müller, H. Piel, J. Pouryamout, R.W. Röth
University of Wuppertal, Wuppertal
|
|
SRF93I54 |
Fundamentally Fastest Method Measuring Q0(Eacc) - Performance of SC Cavities
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acceleration, coupling, superconductivity, CERN |
1118 |
|
- D. Reschke, R.W. Röth
University of Wuppertal, Wuppertal
|
|
SRF93I55 |
Islands or Films? New Aspects on the NbHx - Puzzle
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niobium, lattice, DESY, CEBAF |
1126 |
|
- R.W. Röth
University of Wuppertal, Wuppertal
|
|
SRF93J02 |
TESLA Main Coupler Development at DESY
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vacuum, TESLA, DESY, status |
1144 |
|
- B. Dwersteg, G. Weichert, N. Adelt
DESY, Hamburg
|
|
SRF93J03 |
Study of Ultra-Clean Surface for Niobium SC Cavities
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KEK, niobium, superconducting-cavity, CEBAF |
1151 |
|
- K. Saito, S. Noguchi, E. Kako, M. Ono, T. Shishido
KEK, Ibaraki-ken
- H. Miwa, T. Suzuki
Nomura Plating Co. Ltd., Tochigi-ken
- K. Kurosawa
SONY Co. Ltd., Atsugi Technology Center, Kanagawa-ken
- P. Kneisel
CEBAF, Newport News, Virginia
|
|
SRF93J04 |
Bonding of a Microwave-absorbing Ferrite, TDK IB-004 with Copper for the HOM Damper of the KEK B-Factory SC Cavities
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vacuum, HOM, factory, KEK |
1160 |
|
- T. Tajima, K. Asano, T. Furuya, S. Mitsunobu, T. Takahashi
KEK, Ibaraki-ken
- S. Iida
Kinzoku Giken Co., Ltd., Ibaraki
- Y. Ishi, Y. Kijima
Mitsubishi Electric Corporation, Kobe-shi
- S. Kokura
Hitachi Material Engineering Co., Ltd., Ibaraki
- H. Takashina
TDK Co., Ltd., Chiba
|
|
SRF93J05 |
Activities of Superconducting Cavity for KEK B-Factory
|
KEK, factory, HOM, superconducting-cavity |
1176 |
|
- S. Mitsunobu, K. Asano, T. Furuya, T. Tajima, T. Takahashi
KEK, Ibaraki-ken
- Y. Ishi, Y. Kijima
Mitsubishi Electric Corporation, Kobe-shi
- K. Ohkubo
MHI, Kobe
|
|
SRF93J06 |
The Booster Linac for the New Delhi Pelletron
|
linac, niobium, booster, coupling |
1184 |
|
- P.N. Potukuchi, B.P. Ajith Kumar, T. Changrani, S. Ghosh, G.K. Mehta, R. Mehta, S. Murlidhar, A. Roy, A. Sarkar
Nuclear Science Centre, New Delhi
- K.W. Shepard
ANL, Argonne
|
|
SRF93J07 |
An Injector for the TESLA Test Facility Linac
|
gun, linac, electron, TESLA |
1188 |
|
- T. Garvey, J.C. Bourdon, R. Chehab, B. Jacquemard, B. Mouton, M. Omeich, J. Rodier, Y. Thiery
LAL, Orsay
|
|
SRF93J09 |
Progress and Status of the S-DALINAC
|
controls, electron, linac, gun |
1203 |
|
- H.-D. Gräf, R. Eichhorn, H. Genz, R. Hahn, T. Hampel, C. Hofmann, J. Horn, C. Lüttge, A. Richter, K. Rühl, P. Schardt, V. Schlott, E. Spamer, A. Stascheck, A. Stiller, F. Thomas, O. Titze, J. Töpper, T. Wesp, M. Wiencken
TH Darmstadt, Darmstadt
- J. Auerhammer
FOM Instituut voor Plasmafysica Rijnhuizen, Nieuwegien
- T. Rietdorf
Mannesmann Mobilfunk GmbH., Düsseldorf
- H. Weise
DESY, Hamburg
- T. Winkler
GSI, Darmstadt
|
|
SRF93K01 |
Investigations of Arcing Phenomena in the Region Near CEBAF RF Windows at 2K
|
cryomodule, vacuum, radiation, klystron |
1212 |
|
- T. Powers, L.R. Doolittle, P. Kneisel, V. Nguyen-Tuong, L. Phillips, C. Reece
CEBAF, Newport News, Virginia
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