Paper |
Title |
Other Keywords |
Page |
MOO02 |
Theoretical Critical Field in RF Application
|
niobium, SRF, superconductivity, KEK |
1 |
|
|
|
|
Slides
|
|
MOO03 |
Thin Film SRF Applications Beyond Accelerators
|
niobium, cryogenics, LIC, controls |
17 |
|
|
|
|
Slides
|
|
MOP00 |
Activities at DESY with High Gradient Superconducting RF Cavities for e+/e- Linear Accelerators
|
TESLA, TTF, linac, electron |
19 |
|
|
|
MOP01 |
CEA-Saclay Laboratory Report
|
cryomodule, proton, linac, SOLEIL |
23 |
|
- C.Z. Antoine
CEA-Saclay, Gif-sur-Yvette
|
|
MOP02 |
The TESLA High Power Coupler Program at Orsay
|
TTF, DESY, TESLA, vacuum |
28 |
|
- T. Garvey, H. Borie, L. Grandsire, P. Lepercq, M. Omeich, R. Panvier, S. Prat
LAL, Orsay
|
|
MOP03 |
Superconducting RF Activities for the Rare Isotope Accelerator at Michigan State University
|
RIA, cryomodule, linac, controls |
32 |
|
- T.L. Grimm, V. Andreev, J. Bierwagen, S. Bricker, C. Compton, D. Gorelov, W. Hartung, M. Johnson, F. Marti, S. Schriber, X. Wu, R.C. York, Q. Zhao
NSCL, East Lansing, Michigan
- P. Kneisel, G. Ciovati
JLAB, Newport News
- A. Facco
INFN/LNL, Legnaro, Padova
|
|
MOP04 |
Superconducting RF Activities at the IPN Orsay Laboratory
|
proton, SRF, EURISOL, ion |
37 |
|
- T. Junquera
IN2P3-CNRS, Orsay
|
|
MOP05 |
Report on Superconducting RF Activities at CERN from 2001 to 2003
|
CERN, LHC, SOLEIL, resonance |
42 |
|
- R. Losito, S. Calatroni, E. Chiaveri, E. Montesinos, J. Tückmantel, D. Valuch
CERN, Geneva
|
|
MOP06 |
SCRF Activities for the ISAC-II Upgrade at TRIUMF
|
ISAC, cryomodule, ISAC-II, TRIUMF |
45 |
|
- R.E. Laxdal, Y. Bylinsky, G. Dutto, K. Fong, A.K. Mitra, R. Poirier, W. Rawnsley, T. Ries, I. Sekachev, G. Stanford
TRIUMF, Vancouver
|
|
MOP09 |
SRF Activities at INFN-Genoa
|
CERN, niobium, electron, SRF |
48 |
|
- R. Parodi, R. Ballantini, A. Chincarini, S. Cuneo, G. Gemme, A. Podesta
INFN Genova, Genova
|
|
MOP10 |
Superconducting RF Activities at FZ-Juelich
|
linac, COSY, niobium, proton |
52 |
|
- R. Stassen, W. Bräutigam, R. Eichhorn, F.M. Esser, B. Laatsch, R. Maier, G. Schug, R. Tölle, E. Zaplatin
FZJ, Jülich
|
|
MOP11 |
Status of the LANL Activities in the Field of RF Superconductivity
|
LANL, superconductivity, niobium, RF-structure |
57 |
|
- T. Tajima, R.L. Edwards, R.C. Gentzlinger, F.L. Krawczyk, J.E. Ledford, J. Liu, D.I. Montoya, R.J. Roybal, D.L. Schrage, A.H. Shapiro
LANL, Los Alamos, New Mexico
|
|
MOP12 |
Surface Superconductivity of Niobium: Onset of Long-Range Coherence
|
SRF, DESY, superconductivity, superconducting-cavity |
60 |
|
- L. von Sawilski, S. Casalbuoni, J. Kötzler
IAP, Hamburg
|
|
MOP15 |
Near-Surface Composition of Electropolished Niobium by Variable Photon Energy XPS
|
photon, niobium, background, SRF |
63 |
|
- A.M. Valente
JLAB, Newport News
- H. Tian, M.J. Kelley
The College of William & Mary, Williamsburg
- C. McGuinness, P.A. Glans, K.E. Smith
Boston University, Boston
|
|
MOP16 |
Low Temperature Heat Treatment Effect on High-Field EP Cavities
|
DESY, niobium, superconducting-cavity, superconductivity |
66 |
|
- J. Hao, D. Reschke, A. Brinkmann, L. Lilje
DESY, Hamburg
|
|
MOP18 |
Effect of Mild Baking on High Field Q-Drop of BCP Cavity
|
superconductivity, site, niobium, DESY |
70 |
|
- G. Eremeev, H. Padamsee, M. Liepe, R. Roy
Cornell University, Ithaca, New York
|
|
MOP19 |
High Gradient Q-Slope: Non In-Situ Baking, Surface Treatment by Plasma and Similarities between BCP & EP Cavities
|
plasma, KEK, superconductivity, vacuum |
74 |
|
- B. Visentin, J.P. Charrier, D. Roudier, Y. Gasser, A. Aspart, J.P. Poupeau, B. Coadou, G. Monnereau
CEA-Saclay, Gif-sur-Yvette
|
|
MOP21 |
Achievements of the Superconducting Damped Cavities in KEKB Accelerator
|
KEK, KEKB, HOM, luminosity |
78 |
|
- T. Furuya, K. Akai, K. Hara, K. Hosoyama, A. Kabe, G. Katano, Y. Kojima, S. Mitsunobu, Y. Morita, H. Nakai, M. Yamaga
KEK, Ibaraki
|
|
MOP22 |
Test of the SOLEIL Cryomodule Prototype with Beam at ESRF
|
SOLEIL, ESR, ESRF, HOM |
82 |
|
- J. Jacob, D. Boilot
ESRF, Grenoble
- S. Chel, P. Bosland, P. Brédy
CEA-Saclay, Gif-sur-Yvette
- E. Chiaveri, R. Losito
CERN, Geneva
- J.-M. Filhol, M.-P. Level, P. Marchand, C. Thomas-Madec
SOLEIL, Gif-sur-Yvette
|
|
MOP23 |
Field Emission Related Phenomena in a 3GHz 20 Cell Cavity of the S-DALINAC
|
electron, simulation, linac, coupling |
86 |
|
- M. Gopych, H.-D. Gräf, U. Laier, M. Platz, A. Richter, A. Stascheck, S. Watzlawik, S. Setzer, T. Weiland
TU Darmstadt, Darmstadt
|
|
MOP24 |
Higher Order Beam Multipactoring and Single Side Beam Multipactoring
|
multipactoring, electron, KEK, KEKB |
89 |
|
- S. Mitsunobu
KEK, Ibaraki
|
|
MOP25 |
SLS Operational Performance with Third Harmonic Superconducting System
|
SLS, CBM, cryogenics, damping |
91 |
|
- M. Pedrozzi, J.-Y. Raguin, W. Gloor
PSI, Villigen
- A. Anghel
EPFL-CRPP, Lausanne
- M. Svandrlik, G. Penco, P. Craievich, A. Fabris, C. Pasotti
Sincrotrone Trieste, Trieste
- E. Chiaveri, R. Losito, S. Marque, O. Aberle
CERN, Geneva
- P. Marchand
SOLEIL, Gif-sur-Yvette
- P. Bosland, S. Chel, P. Brédy, G. Devanz
CEA-Saclay, Gif-sur-Yvette
|
|
MOP26 |
Upgrade to Cryomodule Test Facility at Jefferson Lab
|
cryomodule, controls, SNS, shielding |
95 |
|
- T. Powers, T. Allison, G.K. Davis, M. Drury, C. Grenoble, L. King, T. Plawski, J. Preble
JLAB, Newport News
|
|
MOP27 |
Performance of the 3rd Harmonic Superconducting Cavity at ELETTRA
|
ELETTRA, cryogenics, CBM, damping |
98 |
|
- M. Svandrlik, G. Penco, P. Craievich, A. Fabris, C. Pasotti
Sincrotrone Trieste, Trieste
- M. Pedrozzi
PSI, Villigen
- A. Anghel
EPFL-CRPP, Lausanne
- P. Marchand
SOLEIL, Gif-sur-Yvette
- P. Bosland, P. Brédy, S. Chel, G. Devanz
CEA-Saclay, Gif-sur-Yvette
- E. Chiaveri, S. Calatroni, R. Losito, S. Marque
CERN, Geneva
|
|
MOP29 |
The Diamond Light Source RF System
|
DIAMOND, storage-ring, superconducting-cavity, cryogenics |
101 |
|
- R. Bate, D.M. Dykes
STFC/DL/ASTeC, Daresbury, Warrington, Cheshire
- M. Jensen
Diamond, Oxfordshire
|
|
MOP30 |
Drift Tube Cavity Cryomodule Design for RIA
|
cryomodule, vacuum, RIA, ATLAS |
103 |
|
- J.D. Fuerst, K.W. Shepard, M.P. Kelly, M. Kedzie
ANL, Argonne
|
|
MOP31 |
Experimental Results on SCRF Cavity Prototypes for Gravitational Wave Detection
|
controls, coupling, simulation, MBA |
106 |
|
- G. Gemme, R. Ballantini, A. Chincarini, R. Parodi
INFN Genova, Genova
- O. Aberle, Ph. Bernard, S. Calatroni, E. Chiaveri, R. Losito
CERN, Geneva
- E. Picasso
Scuola Normale Superiore, Pisa
|
|
MOP32 |
Prototype Cryomodule for the ADS LINAC
|
cryomodule, linac, JAERI, KEK |
111 |
|
- S. Noguchi, E. Kako, N. Ohuchi, K. Saito, T. Shishido, K. Tsuchiya
KEK, Ibaraki
- N. Ouchi
JAERI, Ibaraki
|
|
MOP33 |
Conceptual Layout of the Cavity String of the Cornell ERL Main Linac Cryomodule
|
HOM, linac, ERL, damping |
115 |
|
- M. Liepe
Cornell University, Ithaca, New York
|
|
MOP34 |
Research and Development Program on Superconducting Crab Cavities for KEKB
|
KEK, KEKB, niobium, luminosity |
120 |
|
- H. Nakai, K. Hara, T. Honma, K. Hosoyama, A. Kabe, Y. Kojima, Y. Morita
KEK, Ibaraki
- K. Nakanishi, Md. M. Rahman
Graduate University for Advanced Studies, Ibaraki
- K. Okubo
MHI Shipyard and Machinery Works, Kobe
|
|
MOP36 |
Design of a Superconducting Half Wave Resonator Module for Proton/Deuteron Acceleration
|
solenoid, vacuum, cryogenics, proton |
124 |
|
- M. Pekeler, K. Dunkel, R. Henneborn, C. Piel, M. Poier, P. vom Stein, H. Vogel
ACCEL, Bergisch Gladbach
|
|
MOP37 |
Installation, Commissioning and Test Results of Superconducting RF Modules for Light Sources and Electron Storage Rings
|
cryogenics, SRF, controls, vacuum |
128 |
|
- M. Pekeler, S. Bauer, B. Griep, M. Peiniger, P. vom Stein, H. Vogel
ACCEL, Bergisch Gladbach
- S. Belomestnykh, H. Padamsee, P. Quigley, J. Sears
Cornell University, Ithaca, New York
|
|
MOP38 |
Design and Construction of the Prototype Cryomodule Renascence for the CEBAF 12 GeV Upgrade
|
cryomodule, CEBAF, HOM, cryogenics |
131 |
|
- C.E. Reece, G. Ciovati, I.E. Campisi, E. Daly, J. Henry, W.R. Hicks, J. Hogan, P. Kneisel, D. Machie, J. Preble, T. Rothgeb, J. Sekutowicz, K. Smith, T. Whitlatch, K.M. Wilson, M. Wiseman, G. Wu
JLAB, Newport News
|
|
MOP39 |
Design of 1.2-GeV SCL as New Injector for BNL AGS
|
SCL, AGS, SNS, linac |
135 |
|
- A.G. Ruggiero, J. Alessi, M. Harrison, M. Iarocci, T. Nehring, D. Raparia, T. Roser, J. Tuozzolo, W. Weng
BNL, Upton, Long Island, New York
|
|
MOP40 |
Development of Superstructures for High Current Application
|
HOM, damping, dipole, impedance |
140 |
|
- J. Sekutowicz, P. Kneisel, G. Wu
JLAB, Newport News
|
|
MOP41 |
CW Energy Recovery Operation of an XFEL
|
linac, DESY, XFEL, gun |
144 |
|
- J. Sekutowicz, S.A. Bogacz, D. Douglas, P. Kneisel, G.P. Williams
JLAB, Newport News
- M. Ferrario, L. Serafini
INFN/LNF, Frascati (Roma)
- I. Ben-Zvi, J. Rose, T. Srinivasan-Rao
BNL, Upton, Long Island, New York
- P. Colestock
LANL, Los Alamos, New Mexico
- W.-D. Möller, B. Petersen, D. Proch, S. Simrock
DESY, Hamburg
- J.B. Rosenzweig
UCLA, Los Angeles, California
|
|
MOP44 |
Degradation of Superconducting RF Cavity Performance by Extrinsic Properties
|
scattering, electron, impedance, superconductivity |
156 |
|
- J.D. Halbritter
FZK, Karlsruhe
|
|
MOP45 |
Optimized Shape Sliding Phase Structure for TESLA
|
TESLA, acceleration, coupling, collider |
163 |
|
- V. Shemelin, R.L. Geng, M. Liepe, H. Padamsee
Cornell University, Ithaca, New York
|
|
MOP46 |
CRYHOLAB, A Horizontal Cavity Test Facility : New Results and Development
|
cryogenics, MBA, niobium, linac |
167 |
|
- H. Saugnac, J.-L. Biarrotte, S. Blivet, S. Bousson, T. Junquera, P. Szott
IN2P3-CNRS, Orsay
- B. Visentin, D. Braud, J.P. Charrier, J.P. Poupeau, D. Roudier, P. Sahuquet
CEA-Saclay, Gif-sur-Yvette
|
|
MOP47 |
SRF Activities at Peking University
|
FEL, linac, electron, gun |
170 |
|
- R. Xiang, K. Zhao, Sh. Quan, B. Zhang, Y. Ding, S. Huang, X. Lu, L. Lin, L. Wang, J. Chen
IHIP, Beijing
|
|
MOP48 |
HoBiCaT - A Test Facility for Superconducting RF Systems
|
TESLA, cryogenics, FEL, TTF |
173 |
|
- J. Knobloch, W. Anders, D. Pflückhahn, M. Schuster
BESSY, Berlin
|
|
MOP49 |
Susceptibility Measurements on Surface Treated Niobium Samples
|
niobium, DESY, TESLA, superconductivity |
176 |
|
- B. Steffen, E.-A. Knabbe, L. Lilje, P. Schmüser
DESY, Hamburg
- S. Casalbuoni, J. Kötzler, L. von Sawilski
IAP, Hamburg
|
|
MOT01 |
Basic Principles of RF Superconductivity and Superconducting Cavities
|
electron, niobium, superconductivity, TESLA |
180 |
|
|
|
TUO01 |
Q-Slope at High Gradients: Review of Experiments and Theories
|
superconductivity, niobium, superconducting-cavity, DESY |
199 |
|
- B. Visentin
CEA-Saclay, Gif-sur-Yvette
|
|
|
Slides
|
|
TUO02 |
Surface Characterization of Bulk Nb: What Has Been Done, What Has Been Learnt?
|
niobium, electron, superconductivity, KEK |
206 |
|
- P. Kneisel
JLAB, Newport News
|
|
|
Slides
|
|
TUO03 |
High Gradients in Superconducting Multi-Cell Cavities
|
TESLA, niobium, KEK, SNS |
220 |
|
|
|
|
Slides
|
|
TUO04 |
Operating Experience with β=1 High Current Accelerators
|
cryomodule, KEK, superconducting-cavity, KEKB |
225 |
|
- S. Belomestnykh
Cornell University, Ithaca, New York
|
|
|
Slides
|
|
TUO05 |
Superstructures: First Cold Test and Future Applications
|
HOM, TESLA, damping, linac |
234 |
|
- J. Sekutowicz, C. Albrecht, V. Ayvazyan, R. Bandelmann, T. Büttner, P. Castro, S. Choroba, J. Eschke, B. Faatz, A. Gössel, K. Honkavaara, B. Horst, J. Iversen, K. Jensch, H. Kaiser, R. Kammering, G. Kreps, D. Kostin, R. Lange, J. Lorkiewicz, A. Matheisen, W.-D. Möller, H.-B. Peters, D. Proch, K. Rehlich, D. Reschke, H. Schlarb, S. Schreiber, S. Simrock, W. Singer, X. Singer, K. Twarowski, G. Weichert, M. Wendt, G. Wojtkiewicz, K. Zapfe
DESY, Hamburg
- M. Liepe
Cornell University, Ithaca, New York
- M. Huening
Fermilab, Batavia
- M. Ferrario
INFN/LNF, Frascati (Roma)
- C. Pagani
INFN Milano, Milano
- E. Plawski
INS, Otwock
- P. Kneisel, G. Wu
JLAB, Newport News
- N. Baboi
SLAC, Menlo Park, California
- C. Thomas-Madec
SOLEIL, Gif-sur-Yvette
- H. Chen, W. Huang, C. Tang, S. Zheng
Tsinghua University, Beijing
|
|
|
Slides
|
|
TUO06 |
Third Harmonic Superconducting Passive Cavities in ELETTRA and SLS
|
cryomodule, HOM, damping, ELETTRA |
239 |
|
- P. Bosland, P. Brédy, S. Chel, G. Devanz, M. Luong
CEA-Saclay, Gif-sur-Yvette
- P. Craievich, G. Penco, M. Svandrlik
Sincrotrone Trieste, Trieste
- M. Pedrozzi, W. Gloor
PSI, Villigen
- A. Anghel
EPFL-CRPP, Lausanne
- E. Chiaveri, R. Losito, O. Aberle, S. Calatroni
CERN, Geneva
- P. Marchand
SOLEIL, Gif-sur-Yvette
|
|
|
Slides
|
|
TUO07 |
Status Review of Superconducting RF Photo-Injectors
|
gun, SRF, cathode, laser |
244 |
|
- J. Teichert, H. Büttig, P. Evtushenko, D. Janssen, U. Lehnert, P. Michel, Ch. Schneider
FZD, Dresden
|
|
|
Slides
|
|
TUO08 |
CEBAF-ER: Extending the Frontier of Energy Recovery at Jefferson Lab
|
emittance, linac, CEBAF, electron |
249 |
|
- C. Tennant, K. Beard, S.A. Bogacz, Y. Chao, S. Chattopadhyay, D. Douglas, A. Freyberger, A. Hutton, L. Merminga, M. Tiefenback, H. Toyokawa
JLAB, Newport News
|
|
|
Slides
|
|
TUO09 |
Control of Microphonics and Lorentz Force Detuning with a Fast Mechanical Tuner
|
controls, resonance, feedback, linac |
254 |
|
|
|
|
Slides
|
|
TUO10 |
SCRF Detectors for Gravitational Waves
|
coupling, niobium, resonance, superconductivity |
258 |
|
- G. Gemme, R. Ballantini, A. Chincarini, S. Cuneo, R. Parodi, A. Podesta, R. Vaccarone
INFN Genova, Genova
- O. Aberle, Ph. Bernard, S. Calatroni, E. Chiaveri, R. Losito, H. Neupert
CERN, Geneva
- R.P. Croce, V. Galdi, V. Pierro, I.M. Pinto
INFN Napoli, Napoli
- E. Picasso
Scuola Normale Superiore, Pisa
|
|
|
Slides
|
|
TUP01 |
Field Flatness Tuning of TM110 Mode Cavities With Closely Spaced Modes
|
polarization, resonance, coupling, kaon |
265 |
|
- L. Bellantoni, H. Edwards, T. Khabiboulline, A. Rowe
Fermilab, Batavia
|
|
TUP02 |
Design Study of a 176 MHz SRF Half Wave Resonator for the SPIRAL-2 Project
|
linac, cryomodule, solenoid, ion |
269 |
|
- J.-L. Biarrotte, S. Blivet, S. Bousson, T. Junquera, G. Olry, H. Saugnac
IN2P3-CNRS, Orsay
|
|
TUP03 |
Results From the Room Temperature Model of the Ladder Resonator, a Very Low Beta Cavity for High Current Proton Linacs
|
simulation, linac, EURISOL, MBA |
274 |
|
- G. Bisoffi, V. Andreev, E. Bissiato, D. Micheletti, A. Palmieri, A. Pisent, A.M. Porcellato, S. Stark
INFN/LNL, Legnaro, Padova
|
|
TUP04 |
Control System for the BCP Processing Facility at FNAL
|
controls, status, feedback, instrumentation |
278 |
|
- C. Boffo, D. Connolly, L. Elementi, Y. Tereshkin
Fermilab, Batavia
|
|
TUP05 |
Study of Higher Order Modes in High Current Multicell SRF Cavities
|
HOM, dipole, linac, electron |
282 |
|
- R. Calaga, I. Ben-Zvi, Y. Zhao, D. Wang
BNL, Upton, Long Island, New York
- J. Sekutowicz, G. Wu
JLAB, Newport News
|
|
TUP06 |
Quarter-wave Cavities for the SPIRAL 2 Project
|
linac, coupling, ion, simulation |
290 |
|
- G. Devanz, J.-M. Baze, P.-E. Bernaudin, P. Bosland, S. Chel, Y. Morin, F. Nunio
CEA-Saclay, Gif-sur-Yvette
|
|
TUP07 |
Processing of TTF Cavities at DESY
|
DESY, pick-up, TTF, HOM |
293 |
|
- T. Ebeling, R. Bandelmann, K. Escherich, N. Krupka, A. Matheisen, B. Petersen, N. Steinhau-Kühl, F. Zhu
DESY, Hamburg
|
|
TUP08 |
Mechanical Design of a 161 MHz, β=0.16 Superconducting Quarter Wave Resonator with Steering Correction for RIA
|
RIA, simulation, linac, niobium |
297 |
|
- A. Facco, V. Zviagintsev
INFN/LNL, Legnaro, Padova
- C. Compton, T.L. Grimm, W. Hartung, F. Marti, R.C. York
NSCL, East Lansing, Michigan
|
|
TUP09 |
A 352 MHz, β=0.31 Superconducting Half Wave Resonator for High Intensity Beams
|
linac, impedance, proton, EURISOL |
300 |
|
- A. Facco, V. Zviagintsev
INFN/LNL, Legnaro, Padova
|
|
TUP10 |
Fabrication of Superconducting Cavities for the RF Separated Kaon Beam
|
electron, niobium, kaon, superconducting-cavity |
302 |
|
- M. Foley, L. Bellantoni, H. Edwards
Fermilab, Batavia
|
|
TUP11 |
Niobium to Stainless Steel Braze Transition Development
|
niobium, CERN, vacuum, RIA |
305 |
|
- J.D. Fuerst, W.F. Toter, K.W. Shepard
ANL, Argonne
|
|
TUP12 |
A Database for Superconducting Cavities for the TESLA Test Facility
|
TESLA, superconducting-cavity, TTF, linac |
308 |
|
- P.D. Gall, A. Gössel, V. Gubarev
DESY, Hamburg
|
|
TUP13 |
Continuous Current Oscillation Electropolishing and Applications to Half-Cells
|
niobium, cathode, SRF, LANL |
311 |
|
- R.L. Geng, A. Crawford, G. Eremeev, H. Padamsee
Cornell University, Ithaca, New York
|
|
TUP14 |
Niobium Quarter-Wave Resonator Development for the Rare Isotope Accelerator
|
linac, RIA, vacuum, heavy-ion |
313 |
|
- W. Hartung, J. Bierwagen, S. Bricker, J. Colthorp, C. Compton, T.L. Grimm, S. Hitchcock, F. Marti, L. Saxton, R.C. York
NSCL, East Lansing, Michigan
- A. Facco, V. Zviagintsev
INFN/LNL, Legnaro, Padova
|
|
TUP16 |
Multi-Beam Accelerating Structures
|
ERL, linac, coupling, SASE |
317 |
|
- S. Noguchi, E. Kako
KEK, Ibaraki
|
|
TUP17 |
Approach Towards Establishing Cryogenic Test Facility for SCRF Cavities of 10 MeV Proton LINAC
|
linac, proton, cryogenics, cryomodule |
320 |
|
- P. Khare, P.K. Kush, M.G. Karmarkar
CAT, Indore
|
|
TUP18 |
Quality Control at the TTF-Cleanroom Infrastructure for Cavity-Processing
|
TTF, controls, vacuum, DESY |
322 |
|
- N. Krupka, T. Ebeling, K. Escherich, A. Matheisen, H. Morales Zimmermann, B. Petersen, D. Reschke, N. Steinhau-Kühl, F. Zhu
DESY, Hamburg
|
|
TUP19 |
Electropolishing of Niobium Mono-cell Cavities at Henkel Electropolishing Technology Ltd. (Germany)
|
CERN, DESY, niobium, superconductivity |
327 |
|
- L. Lilje, D. Reschke, A. Matheisen, K. Twarowski, J. Hao
DESY, Hamburg
- B. Henkel
HENKEL Electropolishing Technology Ltd, Neustadt-Glewe
|
|
TUP20 |
Lead-Tin Plating Split Loop Resonators
|
linac, cathode, electron, ion |
330 |
|
- N.R. Lobanov, D.C. Weisser
ANU, Canberra
|
|
TUP21 |
Multi-Stub Superconducting RF Resonators for the ANU Heavy Ion Accelerator
|
simulation, linac, ion, controls |
334 |
|
- N.R. Lobanov, D.C. Weisser
ANU, Canberra
- E. Zaplatin
FZJ, Jülich
|
|
TUP22 |
HFSS Computation of Frequency Sensitivity of ISAC-II Medium Beta Superconducting Cavities
|
simulation, ISAC, TRIUMF, niobium |
339 |
|
- A.K. Mitra, R.E. Laxdal, R. Poirier, K. Fong
TRIUMF, Vancouver
|
|
TUP23 |
Multipacting in the Crab Cavity
|
electron, superconductivity, radiation, simulation |
342 |
|
- Y. Morita, K. Hara, K. Hosoyama, A. Kabe, Y. Kojima, H. Nakai
KEK, Ibaraki
- Md. M. Rahman, K. Nakanishi
Graduate University for Advanced Studies, Ibaraki
|
|
TUP24 |
Overview of the Cornell ERL Injector Cryomodule
|
emittance, HOM, ERL, linac |
348 |
|
- H. Padamsee, B. Barstow, I. Bazarov, S. Belomestnykh, M. Liepe, R.L. Geng, V. Shemelin, C. Sinclair, K. Smolenski, M. Tigner, V. Veshcherevich
Cornell University, Ithaca, New York
|
|
TUP25 |
Application of Flux Gate Magnetometry to Electropolishing
|
cathode, niobium, polarization, monitoring |
351 |
|
- C. Bonavolonta
Naples University Federico II, Napoli
- F. Laviano
Turin Politecnic, Turin
- V. Palmieri
INFN/LNL, Legnaro, Padova
- M. Valentino
INFM, Napoli, Napoli
|
|
TUP26 |
Advancements on Spinning of Seamless Multicell Reentrant Cavities
|
niobium, vacuum, controls, collider |
357 |
|
- V. Palmieri
INFN/LNL, Legnaro, Padova
|
|
TUP27 |
Pipe Cooling of Superconducting Cavities
|
simulation, electron, cryogenics, superconductivity |
362 |
|
- A. Chincarini, R. Ballantini, G. Gemme, R. Parodi
INFN Genova, Genova
|
|
TUP28 |
Superconducting Cavity Production and Preparation at ACCEL Instruments GmbH
|
SNS, TESLA, niobium, acceleration |
368 |
|
- M. Pekeler, S. Bauer, M. Tradt, J. Schwellenbach, P. vom Stein, H. Vogel
ACCEL, Bergisch Gladbach
|
|
TUP29 |
Status of the Development of a Superconducting 352 MHz CH-Prototype Cavity
|
simulation, proton, linac, status |
372 |
|
- H. Podlech, H. Deitinghoff, H. Klein, H. Liebermann, U. Ratzinger, A. Sauer, X. Yan
IAP, Frankfurt am Main
|
|
TUP30 |
Completion of ALPI Medium Beta Section Upgrading
|
vacuum, superconductivity, cathode, linac |
375 |
|
- A.M. Porcellato, A. Beltramin, L. Bertazzo, A. Capuzzo, T. Contran, M. De Lazzari, V. Palmieri, S. Stark, F. Stivanello
INFN/LNL, Legnaro, Padova
|
|
TUP31 |
SNS Medium Beta Cryomodule Performance
|
cryomodule, SNS, vacuum, HOM |
379 |
|
- M. Drury, I.E. Campisi, E. Daly, G.K. Davis, J.R. Delayen, C. Grenoble, J. Hogan, L. King, T. Powers, J. Preble, M. Stirbet, H. Wang, M. Wiseman
JLAB, Newport News
|
|
TUP33 |
SNS Cryomodule Production Progress and Key Lessons Learned
|
cryomodule, shielding, alignment, vacuum |
382 |
|
- J. Hogan, E. Daly, J. Fischer, J. Preble, T. Whitlatch, M. Wiseman
JLAB, Newport News
|
|
TUP34 |
Approach Towards Development of 350 MHz Bulk Niobium SCRF Cavities for 10MeV Prototyping Phase of the Proposed Proton LINAC
|
vacuum, linac, proton, niobium |
385 |
|
- A. Puntambekar, M.G. Karmarkar
CAT, Indore
|
|
TUP35 |
Production and Performance of the First CEBAF Upgrade Cryomodule Intermediate Prototype
|
cryomodule, CEBAF, HOM, controls |
388 |
|
- A.M. Valente, E. Daly, J.R. Delayen, M. Drury, C. Hovater, J. Mammosser, L. Phillips, T. Powers, J. Preble, C.E. Reece, R. Rimmer, H. Wang
JLAB, Newport News
- C. Thomas
SOLEIL, Gif-sur-Yvette
|
|
TUP36 |
Strongly HOM-Damped Multi-cell RF Cavities for High-current Applications
|
HOM, damping, impedance, dipole |
392 |
|
- R. Rimmer, H. Wang, G. Wu
JLAB, Newport News
|
|
TUP37 |
UHV Arc Deposition for RF Superconducting Cavity
|
cathode, laser, vacuum, ion |
397 |
|
- S. Tazzari, A. Cianchi, R. Russo, L. Catani
INFN-Roma II, Roma
- F. Tazzioli
INFN/LNF, Frascati (Roma)
- J. Langner, M.J. Sadowski
The Andrzej Soltan Institute for Nuclear Studies, Swierk
|
|
TUP38 |
UHV Arc for Superconducting Niobium Film Deposition
|
niobium, cathode, background, radiation |
402 |
|
- R. Russo, A. Cianchi, R. Polini, S. Tazzari, L. Catani
INFN-Roma II, Roma
- F. Tazzioli
INFN/LNF, Frascati (Roma)
- J. Langner
The Andrzej Soltan Institute for Nuclear Studies, Swierk
- N.N. Koval
Institute of High Current Electronics, Tomsk
|
|
TUP39 |
Simple Aluminum Sealing Against Superfluid Helium
|
KEK, niobium, vacuum, simulation |
407 |
|
- K. Saito, H. Inoue, Y. Kobayashi, H. Tatsumoto
KEK, Ibaraki
|
|
TUP40 |
Hot Roll Bonding Method for Nb/Cu Clad Seamless SC Cavity
|
KEK, DESY, vacuum, shielding |
412 |
|
- I. Itoh
Nippon Steel Co., Chiba
- K. Saito, H. Inoue
KEK, Ibaraki
- W. Singer
DESY, Hamburg
|
|
TUP41 |
Design of Dies with Right Cavity Geometry for a Proton SC Linac
|
simulation, niobium, linac, proton |
418 |
|
- K. Saito, S. Noguchi, H. Inoue
KEK, Ibaraki
- T. Ohota
MHI Takasago R&D Centre, Hyogo
- T. Yanagisawa, K. Nakanishi
MHI Shipyard and Machinery Works, Kobe
- H. Umezawa
Tokyo Denkai Co. Ltd., Tokyo
|
|
TUP42 |
Development of Pre-tuning System for 972 MHz 9-Cell Superconducting Cavities
|
controls, proton, linac, KEK |
425 |
|
- T. Shishido, E. Kako, S. Noguchi
KEK, Ibaraki
|
|
TUP43 |
Development of the 3.9 GHz 3rd Harmonic Cavity at FNAL
|
HOM, niobium, DESY, electron |
429 |
|
- N. Solyak, H. Edwards, I. Gonin, M. Foley, T. Khabiboulline, D. Mitchell
Fermilab, Batavia
|
|
TUP44 |
Mechanical Design and Engineering of the 3.9 GHz 3rd Harmonic SRF System at Fermilab
|
HOM, niobium, SRF, DESY |
432 |
|
- D. Mitchell, M. Foley, T. Khabiboulline, N. Solyak
Fermilab, Batavia
|
|
TUP45 |
COSY SC HWR Investigations
|
simulation, COSY, linac, vacuum |
437 |
|
- E. Zaplatin, R. Eichhorn, F.M. Esser, B. Laatsch, R. Stassen
FZJ, Jülich
|
|
TUP46 |
Electro Polishing at DESY
|
DESY, controls, niobium, KEK |
442 |
|
- N. Steinhau-Kühl, T. Ebeling, K. Escherich, L. Lilje, A. Matheisen, H. Morales Zimmermann, B. Petersen
DESY, Hamburg
|
|
TUP47 |
BCP Processing Facility
|
SRF, controls, niobium, superconducting-RF |
447 |
|
- Y. Tereshkin, C. Boffo, G. Davis, H. Edwards, A. Rowe
Fermilab, Batavia
|
|
TUP48 |
Synchrotron Soleil Superconducting RF Status
|
cryomodule, SOLEIL, HOM, ESR |
451 |
|
- C. Thomas-Madec, J.-M. Filhol, M.-P. Level, P. Marchand, J. Polian, T. Ruan, F. Ribeiro, R. Lopes, K. Tavakoli
SOLEIL, Gif-sur-Yvette
- J. Jacob, D. Boilot
ESRF, Grenoble
- P. Bosland, P. Brédy, S. Chel, G. Devanz, V. Hennion
CEA-Saclay, Gif-sur-Yvette
- E. Chiaveri, R. Losito
CERN, Geneva
|
|
TUP49 |
The Fabrication and Experimental Investigations of the SC Photoinjector at Peking University
|
gun, electron, superconducting-cavity, emittance |
454 |
|
- Sh. Quan, Y. Ding, S. Huang, L. Lin, X. Lu, L. Wang, R. Xiang, B. Zhang, K. Zhao
IHIP, Beijing
|
|
TUP50 |
A Cleaning Facility to Prepare Particle Free UHV-components
|
vacuum, DESY, superconducting-cavity, TTF |
457 |
|
- K. Zapfe, U. Hahn, M. Hesse, H. Remde
DESY, Hamburg
|
|
TUP51 |
High Field Multipacting of 1.3 GHz TESLA Cavity
|
electron, TESLA, DESY, simulation |
461 |
|
- F. Zhu, D. Proch, J. Hao, D. Reschke
DESY, Hamburg
|
|
TUP52 |
Measurements on Particle Contamination During Cavity Assembly
|
DESY, TTF, controls, gun |
466 |
|
- F. Zhu, R. Bandelmann, T. Ebeling, N. Krupka, A. Matheisen, B. Petersen, D. Reschke
DESY, Hamburg
|
|
TUP53 |
Cold Tests of the RIA Two-Cell Spoke Cavity
|
niobium, RIA, linac, electron |
470 |
|
- M.P. Kelly, J.D. Fuerst, M. Kedzie, K.W. Shepard
ANL, Argonne
|
|
TUP55 |
Development of SRF Spoke Cavities for Low and Intermediate Energy Ion Linacs
|
coupling, vacuum, pick-up, linac |
476 |
|
- G. Olry, J.-L. Biarrotte, S. Blivet, S. Bousson, F. Chatelet, T. Junquera, A. Le Goff, J. Lesrel, C. Miélot, A.C. Mueller, H. Saugnac, P. Szott
IN2P3-CNRS, Orsay
|
|
TUP56 |
Development of Centrifugal Barrel Polishing for Treatment of Superconducting Cavities
|
niobium, accelerating-gradient, DESY, TESLA |
482 |
|
- G. Issarovitch, D. Proch, D. Reschke, W. Singer, X. Singer
DESY, Hamburg
|
|
TUT01 |
Low and Intermediate Beta Cavity Design
|
impedance, SRF, ion, linac |
486 |
|
- J.R. Delayen
JLAB, Newport News
|
|
|
Slides
|
|
TUT02 |
RF Power and HOM Coupler Tutorial
|
HOM, vacuum, SRF, cryogenics |
496 |
|
- B. Rusnak
LLNL, Livermore, California
|
|
|
Slides
|
|
WEO01 |
Status of the SNS Superconducting Cavity Testing and Cryomodule Production
|
cryomodule, SNS, vacuum, status |
516 |
|
- J. Mammosser
JLAB, Newport News
|
|
|
Slides
|
|
WEO03 |
Status of the TTF FEL
|
TESLA, FEL, TTF, DESY |
521 |
|
- S. Schreiber
DESY, Hamburg
|
|
|
Slides
|
|
WEO05 |
Report from the LANL Spoke Cavity Workshop in October 2002
|
LANL, linac, RIA, proton |
526 |
|
- F.L. Krawczyk
LANL, Los Alamos, New Mexico
|
|
|
Slides
|
|
WEO06 |
200 MHz Nb-Cu Cavities for Muon Acceleration
|
linac, LEP, CERN, radiation |
531 |
|
- R.L. Geng, P. Barnes, D. Hartill, H. Padamsee, J. Sears
Cornell University, Ithaca, New York
- S. Calatroni, E. Chiaveri, R. Losito, H. Preis
CERN, Geneva
|
|
|
Slides
|
|
WEO07 |
Results on INFN-LNL Niobium RFQ Resonators
|
alignment, cryogenics, rfq, controls |
535 |
|
- G. Bisoffi, A.M. Porcellato, S. Stark, V. Andreev, G. Bassato, G.P. Bezzon, S Canella, F. Chiurlotto, A. Lombardi, V. Palmieri
INFN/LNL, Legnaro, Padova
- R. Losito
CERN, Geneva
- W. Singer
DESY, Hamburg
|
|
|
Slides
|
|
WEO08 |
Development of Superconducting Intermediate Velocity Cavities for the U.S. RIA Project
|
RIA, linac, niobium, ion |
539 |
|
- K.W. Shepard
ANL, Argonne
|
|
|
Slides
|
|
WEO09 |
Progress Of Nb/Cu Technology with 1.5 GHz Cavities
|
niobium, CERN, cathode, impedance |
544 |
|
- S. Calatroni, E. Barbero-Soto, C. Benvenuti, L. Ferreira, H. Neupert
CERN, Geneva
|
|
|
Slides
|
|
WEO12 |
Voltage Breakdown and the Processing Mechanism
|
ion, niobium, cathode, electron |
551 |
|
- G.R. Werner, H. Padamsee, D.P. Lundberg, A.S. Romanenko, J.E. Shipman, L.T. Ying
Cornell University, Ithaca, New York
|
|
|
Slides
|
|
WEO13 |
Superconductivity Above Hc2 as a Probe for Niobium RF Cavity Surfaces
|
superconductivity, electron, ITY, niobium |
555 |
|
- S. Casalbuoni, J. Kötzler, L. von Sawilski
University of Hamburg, Hamburg
|
|
|
Slides
|
|
WEO14 |
Effect of Low Temperature Baking on Niobium Cavities
|
niobium, SRF, electron, superconducting-cavity |
562 |
|
- G. Ciovati, P. Kneisel, G. Myneni
JLAB, Newport News
- W.A. Lanford
SUNY Albany, Albany, New York
|
|
|
Slides
|
|
WEO15 |
Development of Hydrogen-free EP and Hydrogen Absorption Phenomena
|
niobium, KEK, accelerating-gradient, superconductivity |
572 |
|
- T. Higuchi
Nomura Plating Co. Ltd., Osaka
- K. Saito
KEK, Ibaraki
|
|
|
Slides
|
|
WET02 |
Fundamentals of Electrochemistry - The Electrolytic Polishing of Metals: Application to Copper and Niobium
|
niobium, ion, controls, polarization |
579 |
|
- V. Palmieri
INFN/LNL, Legnaro, Padova
|
|
|
Slides
|
|
THP01 |
RRR Measurements on Niobium for Superconducting RF Cavities at Fermilab
|
DESY, electron, niobium, superconducting-RF |
588 |
|
- P. Bauer, T. Berenc, C. Boffo, M. Foley, M. Kuchnir, Y. Tereshkin, T. Wokas
Fermilab, Batavia
|
|
THP04 |
Topologic Analysis of Samples and Cavities: A New Tool for Morphologic Inspection of Quench Site
|
LEFT, superconductivity, niobium, site |
591 |
|
- S. Berry, C.Z. Antoine, A. Aspart, J.P. Charrier, M. Desmons, L. Margueritte
CEA-Saclay, Gif-sur-Yvette
|
|
THP05 |
Hydrogen Surface Analysis of Niobium in Function of Various Electrochemical Conditions
|
niobium, superconductivity, cathode, vacuum |
596 |
|
- C.Z. Antoine, S. Berry, H. Shou
CEA-Saclay, Gif-sur-Yvette
|
|
THP06 |
Wet Oxidation of an Epitaxial Niobium Film
|
niobium, ion, lattice, SRF |
599 |
|
- W.R. Frisken
York University, Toronto
- L.N. Hand
Cornell University, Ithaca, New York
|
|
THP07 |
Characterization of Niobium Films and a Bulk Niobium Sample with RRR, SIMS and a Squid Magnetometer
|
niobium, CERN, DESY, ion |
604 |
|
- L.N. Hand, J.P. Craig, J.A. Thompson
Cornell University, Ithaca, New York
- W.R. Frisken
York University, Toronto
|
|
THP08 |
Development of a Niobium Bellows for Beamline Connections
|
niobium, electron, alignment, cryogenics |
607 |
|
- L. Turlington, J. Brawley, P. Kneisel, S. Manning, B. Manus, S. Morgan, G. Slack
JLAB, Newport News
|
|
THP09 |
In Situ XPS Investigation of the Baking Effect on the Surface Oxide Structure Formed on Niobium Sheets Used for Superconducting RF Cavity Production
|
niobium, electron, ion, MBA |
610 |
|
- K. Kowalski, A. Bernasik
AGH University of Science and Technology, Krakow
- W. Singer, X. Singer
DESY, Hamburg
- J. Camra
Jagellonian Univerity, Krakow
|
|
THP11 |
Morphology of Niobium Films Sputtered at Different Target-Substrate Angle
|
target, niobium, impedance, simulation |
614 |
|
- D. Tonini
Univ. degli Studi di Padova, Padova
- C. Greggio, V. Palmieri
INFN/LNL, Legnaro, Padova
- G. Keppel, G. Torzo
INFM, Padova, Padova
- F. Laviano
Turin Politecnic, Turin
- M. Musiani
CNR-IENI, Padua
|
|
THP13 |
Surface Science Laboratory for Studying the Surfaces of Superconducting Radio Frequency Cavities
|
vacuum, SRF, electron, niobium |
622 |
|
- A.T. Wu
JLAB, Newport News
|
|
THP14 |
Investigations to Reduce Field Emission in Production SRF Cavities at Jlab
|
site, SNS, vacuum, FEL |
633 |
|
- T. Wang, J. Mammosser, L. Phillips, R. Rimmer
JLAB, Newport News
|
|
THP15 |
Surface Smoothness for High Gradient Niobium SC RF Cavities
|
niobium, superconductivity, KEK, superconducting-cavity |
637 |
|
|
|
THP16 |
RRR Effect on the Flux Trapping of Niobium SC CAVITIES
|
niobium, KEK, CEBAF, superconducting-cavity |
641 |
|
|
|
THP17 |
Q-Slope Analysis of Niobium SC RF Cavities
|
niobium, superconductivity, KEK, electron |
643 |
|
|
|
THP19 |
Q Disease: Insights from 350 MHz Spoke Cavities Tests and ERD Analyses of Hydrogen in Niobium
|
LANL, niobium, vacuum, superconductivity |
655 |
|
- T. Tajima, R.L. Edwards, F.L. Krawczyk, J. Liu, D.L. Schrage, A.H. Shapiro, J.R. Tesmer, C.J. Wetteland
LANL, Los Alamos, New Mexico
- R.L. Geng
Cornell University, Ithaca, New York
|
|
THP20 |
Engineering a Light Source for the Future
|
ERL, higher-order-mode, linac, electron |
658 |
|
- B. Barstow, M. Liepe, H. Padamsee
Cornell University, Ithaca, New York
|
|
THP21 |
Microphonics and Lorentz Transfer Function Measurements on the SNS Cryomodules
|
SNS, cryomodule, background, controls |
662 |
|
- J.R. Delayen, G.K. Davis
JLAB, Newport News
|
|
THP22 |
Piezoelectric Tuner Compensation of Lorentz Detuning in Superconducting Cavities
|
SNS, cryomodule, controls, resonance |
665 |
|
- J.R. Delayen, G.K. Davis
JLAB, Newport News
|
|
THP23 |
Characterization of Piezoelectric Actuators Used for SRF Cavities Active Tuning at Low Temperature
|
SRF, linac, vacuum, proton |
669 |
|
- M. Fouaidy, N. Hammoudi
IPN, Orsay
|
|
THP24 |
Dynamics of Multipacting in Rectangular Coupler Waveguides and Suppression Methods
|
electron, vacuum, solenoid, TESLA |
675 |
|
- R.L. Geng, S. Belomestnykh, H. Padamsee
Cornell University, Ithaca, New York
- P. Goudket, D.M. Dykes
STFC/DL/ASTeC, Daresbury, Warrington, Cheshire
- R.G. Carter
Lancaster University, Lancaster
|
|
THP26 |
RF Conditioning and Testing of Fundamental Power Couplers for the RIA Project
|
vacuum, RIA, SNS, electron |
682 |
|
- M. Stirbet
JLAB, Newport News
- J. Popielarski, T.L. Grimm, M. Johnson
NSCL, East Lansing, Michigan
|
|
THP27 |
Input Couplers for 972 MHz Superconducting Cavities in the High Intensity Proton Linac
|
vacuum, superconducting-cavity, coupling, KEK |
685 |
|
- E. Kako, S. Noguchi, T. Shishido
KEK, Ibaraki
|
|
THP29 |
Microphonics Measurements in RIA Cavities
|
RIA, linac, resonance, feedback |
690 |
|
- M.P. Kelly, K.W. Shepard, M. Kedzie, J.D. Fuerst, S. Sharamentov
ANL, Argonne
|
|
THP30 |
A New Digital Control System for CESR-c and the Cornell ERL
|
controls, ERL, feedback, status |
693 |
|
- M. Liepe, S. Belomestnykh, J. Dobbins, R. Kaplan, C. Strohman
Cornell University, Ithaca, New York
|
|
THP32 |
A Mechanical Tuner and RF Drive Line System for the ISAC II Quarter Wave Superconducting Cavities
|
controls, coupling, ISAC, ISAC-II |
700 |
|
- R.E. Laxdal, K. Fong, A.K. Mitra, R. Poirier, T. Ries, V. Zviagintsev
TRIUMF, Vancouver
|
|
THP33 |
High Power Input Coupler for KEKB SC Cavity and New 1 MW Test Bench
|
KEK, KEKB, superconducting-cavity, klystron |
703 |
|
- S. Mitsunobu, K. Akai, K. Ebihara, T. Furuya, S. Isagawa, H. Nakanishi, M. Ono, M. Yamaga
KEK, Ibaraki
- Y. Sun
IHEP Beijing, Beijing
- Y. Kijima
Mitsubisi Electric Co. Ltd., Tokyo
- T. Tanaka
Furukawa Electric Co. Ltd., Tokyo
|
|
THP35 |
Design and Fabrication of Input RF Coupler Windows for the U.S. Rare Isotope Accelerator Project (RIA)
|
RIA, SNS, electron, vacuum |
711 |
|
- Q.-Sh. Shu, G. Cheng, J. Susta
AMAC International Inc., Newport News
- T.L. Grimm, J. Popielarski
NSCL, East Lansing, Michigan
- S. Einarson, T.A. Treado
CPI, Beverly, Massachusetts
|
|
THP36 |
RF System Modelling for the JLAB 12 GeV Upgrade and RIA
|
klystron, controls, RIA, simulation |
714 |
|
- S. Simrock
DESY, Hamburg
- J.R. Delayen, A. Hofler, C. Hovater
JLAB, Newport News
|
|
THP37 |
Development of a Pulsed Light Ion Accelerator Module Based on Half-Wave Resonators
|
vacuum, coupling, radiation, linac |
718 |
|
- R. Eichhorn, F.M. Esser, B. Laatsch, G. Schug, H. Singer, R. Stassen, E. Zaplatin
FZJ, Jülich
|
|
THP38 |
A High Power CW Input Coupler for Cornell ERL Injector Cavities
|
ERL, coupling, emittance, linac |
722 |
|
- V. Veshcherevich, I. Bazarov, S. Belomestnykh, M. Liepe, H. Padamsee, V. Shemelin
Cornell University, Ithaca, New York
|
|
THP39 |
Microphonics Detuning Compensation in 3.9 GHz Superconducting RF Cavities
|
resonance, controls, FIR, feedback |
726 |
|
- R. Carcagno, L. Bellantoni, T. Berenc, H. Edwards, D. Orris, A. Rowe
Fermilab, Batavia
|
|
THP41 |
Multipacting in 9-cell Tesla Cavities
|
TESLA, superconductivity, DESY, superconducting-cavity |
733 |
|
- K. Twarowski, L. Lilje, D. Reschke
DESY, Hamburg
|
|
THWG1 |
Q Drop at High Gradient, Prospect of Higher Q for CW, Critical RF SC Field
|
niobium, superconductivity, SRF, superconducting-cavity |
736 |
|
|
|
THWG2 |
Ion Accelerating Structures, Intermediate Velocity Cavities
|
rfq, beam-losses, vacuum, HOM |
740 |
|
- J.R. Delayen
JLAB, Newport News
|
|
THWG3 |
RF Coupler Working Group Report
|
SRF, vacuum, cryomodule, HOM |
744 |
|
- B. Rusnak
LLNL, Livermore, California
- F.L. Krawczyk
LANL, Los Alamos, New Mexico
- W.-D. Möller
DESY, Hamburg
|
|
THWG4 |
High Gradient CW Modules for FEL/Standard Modules
|
cryomodule, TESLA, cryogenics, HOM |
752 |
|
- B. Petersen
DESY, Hamburg
|
|
FRO03 |
High Intensity Proton Sources
|
linac, proton, SNS, ion |
755 |
|
- A. Facco
INFN/LNL, Legnaro, Padova
|
|
|
Slides
|
|
FRO04 |
Rare Isotope (Heavy Ion) Accelerators
|
RIA, ion, ISAC, GSI |
763 |
|
- S. Schriber, T.L. Grimm
NSCL, East Lansing, Michigan
|
|
|
Slides
|
|
FRO05 |
Future Stable-Particle Accelerators for Nuclear Physics
|
electron, linac, ion, RHIC |
769 |
|
- L. Harwood
JLAB, Newport News
|
|
|
Slides
|
|