Paper |
Title |
Other Keywords |
Page |
SUA02 |
High-ß Cavity Design - A Tutorial
|
HOM, superconducting-cavity, cryomodule, TESLA |
2 |
|
- S. Belomestnykh, V. Shemelin
Cornell University, Ithaca, New York
|
|
SUA04 |
Tutorial on Low Beta Cavity Design
|
linac, electron, superconducting-cavity, ion |
21 |
|
- A. Facco
INFN/LNL, Legnaro, Padova
|
|
SUP01 |
Ponderomotive Instabilities and Microphonics - A Tutorial
|
controls, feedback, superconducting-cavity, ion |
35 |
|
- J.R. Delayen
JLAB, Newport News
|
|
SUP02 |
Theory and Practice of Cavity RF Test Systems
|
controls, HOM, cryomodule, coupling |
40 |
|
- T. Powers
JLAB, Newport News
|
|
SUP03 |
Cleanliness Techniques
|
superconductivity, controls, DESY, niobium |
71 |
|
|
|
SUP04 |
Cryomodule Design, Assembly and Alignment
|
cryomodule, TTF, vacuum, cryogenics |
78 |
|
- C. Pagani, P. Pierini
INFN Milano, Milano
|
|
MOA02 |
Status of the Spallation Neutron Source
|
cryomodule, SNS, superconducting-cavity, linac |
87 |
|
- I.E. Campisi
SNS, Oak Ridge
|
|
MOA03 |
Experience with the TTF
|
TESLA, DESY, TTF, electron |
93 |
|
|
|
MOA05 |
SRF in Storage Rings
|
SRF, KEK, HOM, storage-ring |
98 |
|
- M. Pekeler
ACCEL, Bergisch Gladbach
|
|
MOP01 |
Structures for RIA and FNAL Proton Driver
|
RIA, proton, linac, niobium |
104 |
|
|
|
MOP02 |
SPIRAL 2 Resonators
|
linac, vacuum, cryomodule, status |
108 |
|
- G. Devanz
CEA-Saclay, Gif-sur-Yvette
|
|
MOP03 |
The HW Resonators in Jülich
|
controls, resonance, COSY, linac |
113 |
|
- R. Stassen, R. Eichhorn, F.M. Esser, B. Laatsch, G. Schug, H. Singer
FZJ, Jülich
|
|
MOP04 |
Niobium Sputtered QWRs
|
linac, vacuum, cathode, ion |
118 |
|
- A.M. Porcellato, V. Palmieri, S. Stark, F. Stivanello
INFN/LNL, Legnaro, Padova
|
|
MOP05 |
Superconducting RFQs
|
ion, SRF, rfq, heavy-ion |
123 |
|
- G. Bisoffi, A.M. Porcellato, G. Bassato, G.P. Bezzon, L. Boscagli, A. Calore, S. Canella, D. Carlucci, F. Chiurlotto, M. Comunian, E. Fagotti, P. Modanese, A. Pisent, M. Poggi, S. Stark
INFN/LNL, Legnaro, Padova
|
|
MOP06 |
Recent Progress in the Superconducting RF Program at TRIUMF/ISAC
|
ISAC, solenoid, cryomodule, ISAC-II |
128 |
|
- R.E. Laxdal, K. Fong, M. Laverty, A.K. Mitra, R. Poirier, I. Sekachev, V. Zvyagintsev
TRIUMF, Vancouver
|
|
MOP09 |
Performance of Large Grain and Single Crystal Niobium Cavities
|
niobium, DESY, collider, cryogenics |
134 |
|
- P. Kneisel, G.R. Myneni, G. Ciovati
JLAB, Newport News
- J. Sekutowicz
DESY, Hamburg
- T. Carneiro
Reference Metals Co., Bridgeville, Pennsylvania
|
|
MOP10 |
Seamless/Bonded Niobium Cavities
|
DESY, niobium, KEK, superconductivity |
143 |
|
|
|
MOP11 |
20 Years of Experience with the Nb/Cu Technology for Superconducting Cavities and Perspectives for Future Developments
|
CERN, LEP, niobium, electron |
149 |
|
- S. Calatroni
CERN, Geneva
|
|
TUA01 |
Multiscale Mechanisms of SRF Breakdown
|
feedback, electron, scattering, superconductivity |
156 |
|
- A. Gurevich
University of Wisconsin, Madison
|
|
TUA02 |
The Problem of Q-Drop in Superconducting Resonators Revised by the Analysis of Fundamental Concepts from RF-Superconductivity Theory
|
niobium, superconductivity, superconducting-cavity, impedance |
162 |
|
- V. Palmieri
INFN/LNL, Legnaro, Padova
|
|
TUA03 |
Review of the Frontier Workshop and Q-slope Results
|
niobium, superconductivity, vacuum, superconducting-cavity |
167 |
|
- G. Ciovati
JLAB, Newport News
|
|
TUA04 |
Review of New Shapes for Higher Gradients
|
TTF, niobium, KEK, superconductivity |
175 |
|
- R.L. Geng
Cornell University, Ithaca, New York
|
|
TUA05 |
High-Current SRF Cavity Design
|
HOM, SOLEIL, coupling, damping |
181 |
|
- D. Meidlinger, T.L. Grimm, W. Hartung
MSU, East Lansing, Michigan
|
|
TUA06 |
Mechanical Properties of Spoke Resonators
|
linac, RIA, proton, electromagnetic-fields |
185 |
|
- Z.A. Conway, K.W. Shepard, M.P. Kelly, J.D. Fuerst, M. Kedzie
ANL, Argonne
|
|
TUA08 |
High Field Q-Slope's Studies Using Thermometry
|
niobium, superconductivity, accelerating-gradient, LEP |
189 |
|
- G. Eremeev, H. Padamsee
Cornell University, Ithaca, New York
|
|
TUA11 |
General Automation of LLRF Control for Superconducting Accelerators
|
controls, LLRF, feedback, DESY |
194 |
|
- A. Brandt, V. Ayvazyan, S. Simrock
DESY, Hamburg
- W. Cichalewski, B. Koseda
Technical University of Łódź-DMSC, Łódź
|
|
TUA12 |
New Magnetron Configurations for Sputtered Nb onto Cu
|
cathode, niobium, target, plasma |
199 |
|
- G. Lanza, J. Bermudez, A. Frigo, V. Palmieri, D. Tonini
INFN/LNL, Legnaro, Padova
- H. Padamsee
Cornell University, Ithaca, New York
|
|
TUA13 |
A15 Superconductors: An Alternative to Niobium for RF Cavities
|
target, niobium, vacuum, superconductivity |
205 |
|
- S.M. Deambrosis, G. Keppel, V. Palmieri, V. Rampazzo, C. Roncolato
INFN/LNL, Legnaro, Padova
- R.G. Sharma
Nuclear Science Center, New Delhi
|
|
TUA14 |
Magnetic Field Sensors Applied to Electropolishing of Superconducting RF Tesla-Type Cavity
|
cathode, controls, ion, polarization |
210 |
|
- C. Bonavolontà
Università di Napoli Federico II, Napoli
- V. Palmieri, V. Rampazzo
INFN/LNL, Legnaro, Padova
- M. Valentino
INFM, Napoli
|
|
TUA15 |
Input Coupler Development for Superconducting Cavity 500kW CW Power Feed
|
cryogenics, simulation, ERL, superconducting-cavity |
215 |
|
- M. Gusarova, A. Krasnov, M. Lalayan, N. Sobenin
Moscow Engineering Physics Institute, Moscow
- A. Zavadtsev, D. Zavadtsev
Introscan Ltd, Moscow
|
|
TUA16 |
Piezoelectric Stack Based System for Lorentz Force Compensation Caused by High Field in Superconducting Cavities
|
resonance, FEL, controls, DESY |
218 |
|
- P. Sekalski, A. Napieralski
Technical University of Łódź-DMSC, Łódź
- S. Simrock
DESY, Hamburg
|
|
TUP01 |
Evidence for Non-Linear BCS Resistance in SRF Cavities
|
TESLA, CEBAF, DESY, feedback |
223 |
|
- P. Bauer, N. Solyak
Fermilab, Batavia
- G. Ciovati
JLAB, Newport News
- G. Eremeev
Cornell University, Ithaca, New York
- A. Gurevich
University of Wisconsin, Madison
- L. Lilje
DESY, Hamburg
- B. Visentin
CEA-Saclay, Gif-sur-Yvette
|
|
TUP02 |
Analysis of the Medium Field Q-slope in Superconducting Cavities Made of Bulk Niobium
|
niobium, cryogenics, impedance, radio-frequency |
230 |
|
- G. Ciovati
JLAB, Newport News
- J. Halbritter
FZK, Karlsruhe
|
|
TUP03 |
Change in High Field Q-slope by Baking and Anodizing
|
niobium, superconductivity, superconducting-cavity, LEP |
236 |
|
- G. Eremeev, H. Padamsee
Cornell University, Ithaca, New York
|
|
TUP05 |
First Results on Fast Baking
|
niobium, vacuum, superconductivity, electron |
241 |
|
- B. Visentin, J.P. Charrier, Y. Gasser
CEA-Saclay, Gif-sur-Yvette
|
|
TUP06 |
Atom-Probe Tomography Analyses of Niobium Superconducting RF Cavity Materials
|
niobium, ion, electron, SRF |
244 |
|
- J.T. Sebastian, D.N. Seidman, K.E. Yoon
Northwestern University, Evanston, Illinois
- P. Bauer, C. Boffo, T. Reid
Fermilab, Batavia
- J. Norem
ANL, Argonne
|
|
TUP07 |
Study of Gas Cluster Ion Beam Surface Treatments for Mitigating RF Breakdown
|
SRF, electron, ion, vacuum |
248 |
|
- D. Swenson, E. Degenkolb
Epion Corporation, Billerica, Massachusetts
- Z. Insepov
ANL, Argonne
|
|
TUP08 |
Investigation of Oxide Layer Structure on Niobium Surfaces Using a Secondary Ion Mass Spectrometer
|
ion, monitoring, niobium, superconductivity |
251 |
|
|
|
TUP11 |
DC Field Emission Scanning Measurements on Electropolished Nb Samples
|
site, DESY, XFEL, niobium |
255 |
|
- A. Dangwal, D. Reschke
DESY, Hamburg
- G. Müller
University of Wuppertal, Wuppertal
|
|
TUP12 |
Use of Precise X-Ray Diffraction, Interstitial Gas Analysis and Squid Measurements to Investigate CVD- and Bulk- Niobium Samples
|
niobium, lattice, DESY, SRF |
261 |
|
- L.N. Hand, J.P. Sinnott, M.S. Weathers
Cornell University, Ithaca, New York
- W.R. Frisken
York University, Toronto
|
|
TUP15 |
Design of Half-Reentrant SRF Cavities
|
TESLA, CEBAF, coupling, simulation |
268 |
|
- M. Meidlinger, T.L. Grimm, W. Hartung
NSCL, East Lansing, Michigan
|
|
TUP16 |
RF Design of a Single Cell Superconducting Elliptical Cavity with Input Coupler
|
proton, resonance, simulation, higher-order-mode |
272 |
|
- A. Roy, A.S. Dhavle, J. Mondal, K.C. Mittal
Bhabha Atomic Research Center, Mumbai
|
|
TUP17 |
Structural Analysis of Single Cell Superconducting Elliptical Cavity with Static Lorentz Force
|
niobium, linac, accelerating-gradient, proton |
275 |
|
- A. Roy, J. Mondal, K.C. Mittal
Bhabha Atomic Research Center, Mumbai
|
|
TUP18 |
Optimization of Wall Thickness of Superconducting 700 MHz Bulk Niobium and Niobium Coated OFHC Cavities by Thermal/Structural Analysis
|
niobium, proton, resonance, linac |
278 |
|
- J. Mondal, A. Roy, K.C. Mittal
Bhabha Atomic Research Center, Mumbai
|
|
TUP23 |
Test of the Photocathode Cooling System of the 3½ Cell SRF Gun
|
cathode, gun, SRF, electron |
284 |
|
- F. Staufenbiel, H. Büttig, P. Evtushenko, D. Janssen, U. Lehnert, P. Michel, K. Möller, C. Schneider, R. Schurig, J. Teichert, R. Xiang
FZD, Dresden
- J. Stephan
Institute for Corrosion Protection, Dresden
- W.-D. Lehmann
Institut für Elementarurbanistik, Dresden
- T. Kamps, D. Lipka
BESSY, Berlin
- I. Will
MBI, Berlin
- V. Volkov
INP, Novosibirsk
|
|
TUP24 |
Superconducting RF Cavity Measurement Fomulae for an Exponentially Decayed Pulse Incident Power
|
SNS, SRF, coupling, cryomodule |
287 |
|
- A. Sun
ORNL, Oak Ridge, Tennessee
- H. Wang
JLAB, Newport News
|
|
TUP26 |
High Surface Fields in Superconducting RF Cavities
|
electron, ion, status, collider |
291 |
|
- J. Norem, Z. Insepov
ANL, Argonne
- P. Bauer
Fermilab, Batavia
- D.N. Seidman, J.T. Sebastian, K.E. Yoon
Northwestern University, Evanston, Illinois
|
|
TUP27 |
X-Ray Imaging of Superconducting RF Cavities
|
electron, simulation, site, diagnostics |
295 |
|
- S. Musser, J. Bierwagen, T.L. Grimm, W. Hartung
NSCL, East Lansing, Michigan
|
|
TUP28 |
Multipacting Analysis for JLAB Ampere Class Cavities
|
electron, HOM, SNS, simulation |
300 |
|
- G. Wu, M. Stirbet, H. Wang, R. Rimmer, E. Donoghue
JLAB, Newport News
|
|
TUP29 |
The Fast Piezo-Blade Tuner for SCRF Resonators
|
TESLA, TTF, cryogenics, DESY |
303 |
|
- C. Pagani, A. Bosotti, P. Michelato, N. Panzeri, R. Paparella, P. Pierini
INFN Milano, Milano
|
|
TUP32 |
The Summarized Findings from the Jülich Halfwave Resonators
|
vacuum, cryomodule, coupling, cryogenics |
309 |
|
- R. Eichhorn, F.M. Esser, B. Laatsch, G. Schug, H. Singer, R. Stassen
FZJ, Jülich
|
|
TUP33 |
Mechanical Studies of the Multi-Gap Spoke Cavity for European Project HIPPI
|
simulation, superconducting-cavity, proton, niobium |
312 |
|
- H. Gassot, S. Blivet, T. Junquera, G. Olry
IPN, Orsay
- E. Zaplatin
FZJ, Jülich
|
|
TUP34 |
Design of 325 MHz Single Spoke Resonator at FNAL
|
linac, proton, coupling, simulation |
314 |
|
- G. Apollinari, I. Gonin, T. Khabiboulline, G. Lanfranco, G. Romanov
Fermilab, Batavia
|
|
TUP35 |
Development of the SCRF ß=0.81 Cavity for Proton Driver
|
SNS, TESLA, proton, HOM |
317 |
|
- I. Gonin, T. Khabiboulline, N. Solyak
Fermilab, Batavia
|
|
TUP36 |
ISAC-II QWR Cavity Characterizations and Investigations
|
ISAC, TRIUMF, ISAC-II, linac |
320 |
|
- R.E. Laxdal, B. Boussier, K. Fong, M. Laverty, A.K. Mitra, V. Zvyagintsev
TRIUMF, Vancouver
|
|
TUP37 |
Development of a Beta 0.12, 88 MHz, Quarter Wave Resonator and its Cryomodule for the SPIRAL2 Project
|
cryomodule, vacuum, niobium, linac |
323 |
|
- G. Olry, J.-L. Biarrotte, S. Blivet, S. Bousson, C. Commeaux, C. Joly, T. Junquera, J. Lesrel, E. Roy, H. Saugnac, P. Szott
IN2P3-CNRS, Orsay
|
|
TUP38 |
Development of Spoke Cavities for the EURISOL and EUROTRANS Projects
|
EURISOL, linac, proton, cryomodule |
328 |
|
- G. Olry, J.-L. Biarrotte, S. Blivet, S. Bousson, C. Joly, T. Junquera, J. Lesrel, A.C. Mueller, H. Saugnac, P. Szott
IN2P3-CNRS, Orsay
- E. Zaplatin
FZJ, Jülich
|
|
TUP39 |
Performance of a Prototype 176 MHz Beta=0.09 Half-Wave Resonator for the SARAF Linac
|
linac, proton, acceleration, ion |
331 |
|
- M. Pekeler, S. Bauer, K. Dunkel, C. Piel, H. Vogel, P. vom Stein
ACCEL, Bergisch Gladbach
- V. Zvyagintsev
TRIUMF, Vancouver
|
|
TUP40 |
Development of Spoke Cavities for RIA
|
niobium, vacuum, linac, coupling |
334 |
|
- K.W. Shepard, Z.A. Conway, J.D. Fuerst, M. Kedzie, M.P. Kelly
ANL, Argonne
|
|
TUP41 |
Multi-Spoke Cavity End Region Analysis
|
rfq, simulation, coupling, acceleration |
337 |
|
|
|
TUP42 |
FZJ SC Cavity Coupled Analyses
|
simulation, controls, vacuum, superconducting-cavity |
342 |
|
|
|
TUP46 |
A Sapphire Loaded TE011 Cavity for Surface Impedance Measurements - Design, Construction, and Commissioning Status
|
impedance, niobium, SRF, coupling |
349 |
|
- L. Phillips, G.K. Davis, J.R. Delayen, J. Ozelis, T. Plawski, H. Wang, G. Wu
JLAB, Newport News
|
|
TUP47 |
Recent RRR measurements on Niobium for Superconducting RF Cavities at Fermilab
|
vacuum, SRF, controls, superconducting-RF |
352 |
|
- P. Bauer, C. Boffo, M. Foley, E. Hahn, D. Hicks, F. McConologue, T. Wokas
Fermilab, Batavia
|
|
TUP48 |
Eddy Current Scanning at Fermilab
|
DESY, niobium, SNS, controls |
355 |
|
- C. Boffo, P. Bauer, M. Foley
Fermilab, Batavia
- A. Brinkmann
DESY, Hamburg
- J. Ozelis
JLAB, Newport News
|
|
TUP50 |
Laser Annealing Experiments with Niobium
|
laser, niobium, DESY, SRF |
360 |
|
- W.R. Frisken
York University, Toronto
- L.N. Hand
Cornell University, Ithaca, New York
- G.H. Chapman, C.-H. Choo, Y. Tu, J. Wang
Simon Fraser University, Burnaby, British Columbia
|
|
TUP51 |
Computer Simulation of Surface Modification with Ion Beams
|
ion, simulation, vacuum, electron |
363 |
|
- Z. Insepov, A. Hassanein
ANL, Argonne
- D. Swenson
Epion Corporation, Billerica, Massachusetts
|
|
TUP52 |
Cold Rolling Evolution in High Purity Niobium Using a Tapered Wedge Specimen
|
niobium, superconductivity, radiation |
366 |
|
- H. Jiang, T.R. Bieler, C. Compton, T.L. Grimm
MSU, East Lansing, Michigan
|
|
TUP53 |
Creep and Dimensional Stability of High Purity Niobium Electron Beam Welds
|
niobium, electron, simulation, feedback |
369 |
|
- H. Jiang, T.R. Bieler, C. Compton, T.L. Grimm
MSU, East Lansing, Michigan
|
|
TUP54 |
Grain Boundary Flux Penetration and Resistivity in Large Grain Niobium Sheet
|
superconductivity, niobium, superconducting-cavity, laser |
372 |
|
- P.J. Lee, A. Gurevich, D.C. Larbalestier, A.A. Polyanskii, A.A. Squitieri
University of Wisconsin, Madison
- P. Bauer, C. Boffo, H.T. Edwards
Fermilab, Batavia
|
|
TUP55 |
Inhomogeneous Flux Penetration in Niobium Sheet Sampled Across the Cavity Production Route
|
superconductivity, niobium, vacuum, LANL |
375 |
|
- A.A. Polyanskii, A. Gurevich, M.C. Jewell, D.C. Larbalestier, P.J. Lee, A.A. Squitieri
University of Wisconsin, Madison
- P. Bauer, L. Bellantoni, C. Boffo, H.T. Edwards
Fermilab, Batavia
|
|
TUP56 |
Contaminant Analysis of Polycrystalline and Single Crystal Niobium Used in Accelerator Cavities
|
niobium, ion, electromagnetic-fields, electron |
379 |
|
- F.A. Stevie, D.P. Griffis, Z. Zhu
North Carolina State University, Raleigh
- G.R. Myneni, P. Kneisel
JLAB, Newport News
|
|
TUP62 |
Cathodic Arc Grown Niobium Films for RF Superconducting Cavity Applications
|
niobium, cathode, plasma, vacuum |
385 |
|
- L. Catani, A. Cianchi, J. Lorkiewicz, S. Tazzari, R. Russo
INFN-Roma II, Roma
- J. Langner, M. Sadowski, P. Strzyzewski
The Andrzej Soltan Institute for Nuclear Studies, Swierk
- A. Andreone, G. Cifariello, E. Di Gennaro, G. Lamura
Università di Napoli Federico II, Napoli
|
|
TUP63 |
RF Properties at 6 GHz of Ultra-High Vacuum Cathodic Arc Films up to 450 Oersted
|
niobium, vacuum, superconducting-cavity, electron |
388 |
|
- A. Romanenko
Cornell University, Ithaca, New York
- R. Russo
INFN-Roma II, Roma
|
|
TUP65 |
RRR of Copper Coating and Low Temperature Electrical Resistivity of Material for TTF Couplers
|
TTF, cryogenics, vacuum, TESLA |
392 |
|
- M. Fouaidy, N. Hammoudi
IPN, Orsay
|
|
TUP66 |
Modeling SRF Cavities and Multipacting with the VORPAL Code
|
electron, simulation, SRF, plasma |
399 |
|
- C. Nieter, J.R. Cary, P.H. Stoltz
Tech-X Corporation, Boulder, Colorado
- G.R. Werner
University of Colorado, Colorado
|
|
TUP67 |
Studies of Electron Activities in SNS-Type Superconducting RF Cavities
|
electron, SNS, simulation, radiation |
402 |
|
- E. Donoghue, J. Mammosser, L. Phillips, R. Rimmer, M. Stirbet, H. Wang, G. Wu
JLAB, Newport News
|
|
WEA01 |
Topic 1: High-field Q-slope
|
DESY, synchrotron, superconductivity |
407 |
|
- P. Kneisel
JLAB, Newport News
|
|
WEA02 |
Topic 2: Surface Analysis
|
DESY, synchrotron, superconductivity |
407 |
|
- C.Z. Antoine
CEA-Saclay, Gif-sur-Yvette
|
|
WEA03 |
Topic 3: Spoke vs Elliptical Cavities for β = 0.5
|
acceleration, proton, linac, LANL |
408 |
|
- F.L. Krawczyk
LANL, Los Alamos, New Mexico
|
|
THA01 |
Superconducting RF Test Facility (STF) in KEK
|
cryomodule, linac, KEK, TESLA |
409 |
|
|
|
THA02 |
Planning for the New Linear Collider Test Facility at FNAL & Progress on 3.9GHz SRF
|
TESLA, SRF, DESY, linac |
412 |
|
- H.T. Edwards
Fermilab, Batavia
|
|
THA03 |
Review of Various Approaches to Address High Currents in SRF Electron Linacs
|
HOM, electron, linac, ERL |
415 |
|
- I. Ben-Zvi
BNL, Upton, Long Island, New York
|
|
THA04 |
The Design and Performance of CW and Pulsed Power Couplers - A Review
|
TTF, TESLA, vacuum, SNS |
423 |
|
|
|
THA05 |
Advances in Electromagnetic Modelling through High Performance Computing
|
HOM, simulation, SLAC, TESLA |
428 |
|
- K. Ko, N. Folwell, L. Ge, A. Guetz, L. Lee, Z. Li, C. Ng, E. Prudencio, G. Schussman, R. Uplenchwar, L. Xiao
SLAC, Menlo Park, California
|
|
THA06 |
Review on Superconducting RF Guns
|
gun, cathode, SRF, laser |
433 |
|
- D. Janssen, A. Arnold, H. Büttig, U. Lehnert, P. Michel, P. Murcek, C. Schneider, R. Schurig, F. Staufenbiel, J. Teichert, R. Xiang
FZD, Dresden
- J. Stephan
Fraunhofer-Institut für Keramische Technologien und Systeme, Dresden
- V. Volkov
INP, Novosibirsk
|
|
THA09 |
Crab Cavity Development
|
KEK, KEKB, niobium, electron |
439 |
|
- K. Hosoyama, K. Akai, T. Furuya, K. Hara, A. Honma, A. Kabe, Y. Kojima, M. Masuzawa, S. Mitsunobu, Y. Morita, H. Nakai, Y. Yamamoto
KEK, Ibaraki
- K. Nakanishi
Graduate University for Advanced Studies, Ibaraki
- T. Hattori, M. Matsuoka, K. Okubo, K. Sennyu, T. Yanagisawa
MHI Shipyard and Machinery Works, Kobe
|
|
THP01 |
Electropolishing on Small Samples at Fermilab
|
cathode, niobium, SRF, DESY |
447 |
|
- C. Boffo, P. Bauer, T. Reid
Fermilab, Batavia
- R.L. Geng
Cornell University, Ithaca, New York
|
|
THP02 |
Efficiency of Electropolishing versus Bath Composition and Aging: First Results
|
niobium, cathode, KEK, superconductivity |
451 |
|
- F. Eozenou, C.Z. Antoine, A. Aspart, S. Berry, J.F. Denis
CEA-Saclay, Gif-sur-Yvette
- B. Malki
INP-Grenoble, Grenoble
|
|
THP03 |
Aluminium and Sulphur Impurities in Electropolishing Baths
|
cathode, niobium, DESY, KEK |
455 |
|
- A. Aspart, C.Z. Antoine, F. Eozenou
CEA-Saclay, Gif-sur-Yvette
|
|
THP04 |
Vertical Electropolishing Niobium Cavities
|
niobium, electron, superconductivity, cathode |
459 |
|
- R.L. Geng, C. Crawford, H. Padamsee, A. Seaman
Cornell University, Ithaca, New York
|
|
THP05 |
Update on the Experiences of Electro Polishing of Multi-Cell Resonators at DESY
|
DESY, acceleration, controls, niobium |
464 |
|
- N. Steinhau-Kühl, L. Lilje, A. Matheisen, B. Petersen, M. Schmökel, H. Weitkämper
DESY, Hamburg
|
|
THP06 |
Electropolishing of Niobium Mono-Cell Cavities at HENKEL Electropolishing Technology Ltd. (Germany)
|
DESY, niobium, superconductivity, controls |
467 |
|
- L. Lilje, A. Matheisen, D. Reschke, N. Steinhau-Kühl, A. Brinkmann
DESY, Hamburg
- C. Hartmann, B. Henkel
HENKEL Electropolishing Technology Ltd, Neustadt-Glewe
|
|
THP08 |
Preparation Sequences for Electro-Polished High Gradient Multi-Cell Cavities at DESY
|
DESY, TTF, niobium, pick-up |
470 |
|
- A. Matheisen, B. van der Horst, B. Petersen, S. Sägebarth, P. Schilling
DESY, Hamburg
|
|
THP09 |
Further Improvements with Dry-Ice Cleaning on SRF-Cavities
|
DESY, superconducting-cavity, controls, linac |
473 |
|
- A. Brinkmann, J. Iversen, D. Reschke, J. Ziegler
DESY, Hamburg
|
|
THP10 |
High Pressure Rinsing Parameters Measurements
|
niobium, superconducting-cavity, TESLA, target |
475 |
|
- E. Cavaliere, M. Fusetti, P. Michelato, C. Pagani, P. Pierini, R. Paulon, D. Sertore
INFN Milano, Milano
|
|
THP11 |
A Joint ANL/FNAL Cavity Surface Processing Facility
|
power-supply, niobium, controls, status |
478 |
|
- M.P. Kelly, M. Kedzie, K.W. Shepard
ANL, Argonne
- A. Rowe, Y. Terechkine, C. Boffo, L. Elementi
Fermilab, Batavia
|
|
THP12 |
Developments in Electron Beam Welding of Niobium Cavities
|
niobium, electron, ERL, controls |
481 |
|
- J. Sears, B. Clasby
Cornell University, Ithaca, New York
|
|
THP13 |
Quality Control Update of the Cleanroom for Superconducting Multi Cell Cavities at DESY
|
controls, DESY, acceleration, ion |
483 |
|
- N. Krupka, K. Escherich, M. Habermann, K. Harries, A. Matheisen, B. Petersen
DESY, Hamburg
|
|
THP14 |
Clean-Room Facilities for High Gradient Resonator Preparation
|
DESY, controls, TTF, TESLA |
486 |
|
- K. Escherich, N. Krupka, A. Matheisen, B. Petersen, M. Schmökel
DESY, Hamburg
|
|
THP15 |
Towards Industrialization: Supporting the Manufacturing Processes of Superconducting Cavities at DESY
|
DESY, XFEL, controls, superconducting-cavity |
489 |
|
- J. Bürger, J.A. Dammann, L. Hagge, J. Iversen, A. Matheisen, W. Singer
DESY, Hamburg
|
|
THP21 |
A Database for Superconducting Cavities for the TESLA Test Facility
|
DESY, TESLA, superconducting-cavity, controls |
507 |
|
- P.D. Gall, A. Goessel, V. Gubarev, J. Iversen
DESY, Hamburg
|
|
THP23 |
Recent Results and Developments from the S-DALINAC
|
electron, niobium, vacuum, simulation |
511 |
|
- A. Araz, M. Brunken, M. Gopych, H.-D. Gräf, J. Hasper, M. Hertling, M. Platz, A. Richter, S. Watzlawik
TU Darmstadt, Darmstadt
- H. Kunze, W. Müller, S. Setzer, T. Weiland
TEMF, Darmstadt
- W. Bayer, U. Laier
GSI, Darmstadt
|
|
THP24 |
Recent Progresses on DC-SC Photoinjector at Peking University
|
superconducting-cavity, electron, emittance, FEL |
515 |
|
- J. Hao, J. Chen, Y. Ding, S. Huang, F. Jiao, L. Lin, X. Lu, S. Quan, G. Wang, L. Wang, D. Xie, B. Zhang, K. Zhao, F. Zhu
IHIP, Beijing
|
|
THP25 |
Possibility of Adopting Solenoid in DC-SC Photoinjector
|
solenoid, emittance, gun, electron |
518 |
|
- R. Xiang, Y. Ding, J. Hao, S. Huang, X. Lu, S. Quan, B. Zhang, K. Zhao
IHIP, Beijing
|
|
THP26 |
Design and Fabrication of the RHIC Electron-Cooling Experiment High Beta Cavity and Cryomodule
|
cryomodule, vacuum, niobium, BNL |
521 |
|
- D. Holmes, A. Ambrosio, M. Cole, M. Falletta, E. Peterson, J. Rathke, T. Schultheiss, R. Wong
Advanced Energy Systems Inc., Medford, New York
- I. Ben-Zvi, A. Burrill, R. Calaga, P. Cameron, X. Chang, H. Hahn, H. Hseuh, D. Kayran, V. Litvinenko, G. McIntyre, A. Nicoletti, J. Rank, J. Scaduto, T. Rao, K. Wu, Y. Zhao
BNL, Upton, Long Island, New York
- E.F. Daly, J.R. Delayen, W. Funk, J. Hogan, P. Kneisel, D. Machie, J. Mammosser, L. Phillips, J. Preble, M. Wiseman
JLAB, Newport News
|
|
THP28 |
Report on Superconducting RF Activities at ANU
|
controls, linac, acceleration, status |
525 |
|
- N.R. Lobanov, G.S. Foote, D.C. Weisser
ANU, Canberra
|
|
THP29 |
Fermilab’s Mechanical Design and Engineering of the 3.9 GHz, 3rd Harmonic SRF System
|
cryomodule, DESY, HOM, TTF |
528 |
|
- M. Foley, T. Khabiboulline, C.M. Lei, D. Mitchell, D. Olis, S. Reeves, N. Solyak, A. Stefanik, S. Tariq
Fermilab, Batavia
|
|
THP32 |
Canadian Light Source Storage Ring RF System
|
controls, LLRF, EPICS, rf-amplifier |
532 |
|
- R. Tanner, M. de Jong, E. Matias, M. Silzer, J. Stampe, G. Wright
University of Saskatchewan, Saskatoon
|
|
THP33 |
Operational Experience of the Superconducting RF Module at TLS
|
SRF, photon, electron, synchrotron |
535 |
|
- C. Wang, L.H. Chang, S.S. Chang, F.T. Chung, M.C. Lin, M.H. Tsai, T.T. Yang, M.S. Yeh
NSRRC, Hsinchu
|
|
THP34 |
The Progress Report on RF Superconductivity at Peking University
|
cryogenics, gun, electron, DESY |
538 |
|
- K. Zhao, J. Chen, Y. Ding, J. Hao, S. Huang, L. Lin, X. Lu, S. Quan, L. Wang, B. Zhang
IHIP, Beijing
|
|
THP35 |
A European Advanced Technology Programme for ADS Accelerator Development
|
linac, LLRF, proton, controls |
541 |
|
- J.-L. Biarrotte, T. Junquera, A.C. Mueller
IN2P3-CNRS, Orsay
|
|
THP36 |
High Power (35 kW and 190 kW) 352 MHz Solid State Amplifiers for the SOLEIL Synchrotron
|
SOLEIL, controls, vacuum, power-supply |
544 |
|
- C. Thomas-Madec, M. Diop, R. Lopes, P. Marchand, J. Polian, F. Ribeiro, T. Ruan
SOLEIL, Gif-sur-Yvette
|
|
THP38 |
Status of the ATLAS Upgrade Cryomodule
|
vacuum, cryomodule, ATLAS, linac |
548 |
|
- J.D. Fuerst, Z.A. Conway, M. Kedzie, M.P. Kelly, S. MacDonald, K.W. Shepard, G. Zinkann
ANL, Argonne
|
|
THP39 |
Pulsed Operation of the 972 MHz Prototype Cryomodule for ADS Superconducting Linac
|
KEK, cryomodule, linac, JAERI |
551 |
|
- E. Kako, S. Noguchi, N. Ohuchi, T. Shishido, K. Tsuchiya
KEK, Ibaraki
- N. Akaoka, E. Chishiro, T. Hori, H. Kobayashi, M. Nakata, N. Ouchi, M. Yamazaki
JAERI, Ibaraki
|
|
THP40 |
Magnetic Field Studies in the ISAC-II Cryomodule
|
solenoid, cryomodule, ISAC, vacuum |
554 |
|
- R.E. Laxdal, B. Boussier, K. Fong, I. Sekachev, G. Clark, V. Zvyagintsev
TRIUMF, Vancouver
- R. Eichhorn
FZJ, Jülich
|
|
THP45 |
Successful RF and Cryogenic Tests of the SOLEIL Cryomodule
|
cryomodule, HOM, SOLEIL, CERN |
564 |
|
- C. Thomas-Madec, M. Louvet, P. Marchand, K. Tavakoli
SOLEIL, Gif-sur-Yvette
- P. Bosland, Ph. Bredy, S. Chel, G. Devanz
CEA-Saclay, Gif-sur-Yvette
- R. Losito, P. Maesen, M. Prax, L. Arnaudon, O. Brunner, E. Montesinos, G. Pechaud
CERN, Geneva
|
|
THP46 |
The JLab Ampere-Class Cryomodule
|
HOM, damping, cryomodule, CEBAF |
567 |
|
- R. Rimmer, E.F. Daly, J. Henry, W.R. Hicks, J. Preble, M. Stirbet, H. Wang, K.M. Wilson, G. Wu
JLAB, Newport News
|
|
THP47 |
Development and Testing of RF Double Window Input Couplers for TESLA
|
DESY, TESLA, vacuum, cryogenics |
571 |
|
- W.-D. Möller, D. Proch, D. Kostin
DESY, Hamburg
- Q.S. Shu, J.T. Susta, G. Cheng
AMAC International Inc., Newport News
- T.A. Treado, S. Einarson
CPI, Beverly, Massachusetts
- T. Garvey
LAL, Orsay
|
|
THP48 |
Preparation and Conditioning of the TTF VUV-FEL Power Couplers
|
vacuum, TTF, DESY, FEL |
574 |
|
|
|
THP49 |
RF Processing of Couplers for the SNS Superconducting Cavities
|
SNS, vacuum, superconducting-cavity, cryomodule |
577 |
|
- Y. Kang, I.E. Campisi, D. Stout
ORNL, Oak Ridge, Tennessee
- M. Stirbet, M. Drury, T. Powers
JLAB, Newport News
|
|
THP50 |
Power Couplers Design for Third Harmonic and Spoke Cavities at Fermilab
|
TTF, DESY, vacuum, coupling |
580 |
|
- D. Arnold, T. Khabiboulline, J. Li, D. Mitchell, T. Nicol, D. Olis, N. Solyak
Fermilab, Batavia
- W.-D. Möller
DESY, Hamburg
|
|
THP53 |
Study of Thermal Interaction Between a 150 kW CW Power Coupler and a Superconducting 704 MHz Elliptical Cavity
|
coupling, simulation, niobium, linac |
584 |
|
- M. Souli, S. Bousson, M. Fouaidy, N. Gandolfo, H. Saugnac, P. Szott
IN2P3-CNRS, Orsay
- D. Braud, J.P. Charrier, D. Roudier, P. Sahuquet, B. Visentin
CEA-Saclay, Gif-sur-Yvette
|
|
THP54 |
Design of High Power Input Coupler for Cornell ERL Injector Cavities
|
coupling, ERL, linac, TTF |
590 |
|
- V. Veshcherevich, S. Belomestnykh, M. Liepe, V. Medjidzade, H. Padamsee, V. Shemelin
Cornell University, Ithaca, New York
- N. Sobenin
MEPhI, Moscow
- A. Zavadtsev
Introscan Ltd, Moscow
|
|
THP56 |
R-Square Impedance of ERL Ferrite HOM Absorber
|
impedance, HOM, resonance, ERL |
596 |
|
- H. Hahn, A. Burrill, R. Calaga, D. Kayran, Y. Zhao
BNL, Upton, Long Island, New York
|
|
THP58 |
Electromagnetic Simulations of Coaxial Type HOM Coupler
|
HOM, niobium, coupling, simulation |
600 |
|
- G. Wu, C. Reece, R. Rimmer, H. Wang
JLAB, Newport News
|
|
THP59 |
FNAL 3.9 GHz HOM Coupler & Coaxial Cable Thermal FEA
|
HOM, cryogenics, cryomodule, pick-up |
604 |
|
- S. Tariq, T. Khabiboulline
Fermilab, Batavia
|
|
THP60 |
Electromechanical, Thermal Properties and Radiation Hardness Tests of Piezoelectric Actuators at Low Temperature
|
neutron, SRF, radiation, vacuum |
608 |
|
- M. Fouaidy, S. Blivet, F. Chatelet, N. Hammoudi, A. Le Goff, G. Martinet, A. Olivier, H. Saugnac
IPN, Orsay
|
|
THP62 |
Characterization of an Elliptical Low Beta Multicell Structure for Pulsed Operation
|
vacuum, linac, coupling, simulation |
612 |
|
- A. Bosotti, C. Pagani, N. Panzeri, P. Pierini
INFN Milano, Milano
- G. Ciovati, P. Kneisel
JLAB, Newport News
|
|
THP63 |
Digital Cavity Resonance Monitor - Alternative Method of Measuring Cavity Microphonics
|
resonance, CEBAF, SNR, linac |
616 |
|
- T. Plawski, G.K. Davis, H. Dong, C. Hovater, J. Musson, T. Powers
JLAB, Newport News
|
|
THP64 |
Transient Ponderomotive Effects in Superconducting Cavities
|
klystron, CEBAF, controls, vacuum |
619 |
|
- T. Powers, G.K. Davis
JLAB, Newport News
|
|
THP65 |
Cold Tuning System Dedicated to 700 MHz Superconducting Elliptical Cavity for Protons Linac
|
SRF, linac, neutron, proton |
622 |
|
- M. Fouaidy, S. Blivet, S. Bousson, N. Gandolfo, N. Hammoudi, M. Nicolas, S. Rousselot, H. Saugnac, P. Szott
IPN, Orsay
|
|
FRA01 |
Rare Isotope Accelerator (RIA) Project
|
linac, RIA, target, ion |
626 |
|
- R.C. York
MSU, East Lansing, Michigan
|
|