Paper |
Title |
Other Keywords |
Page |
MOP04 |
Superconducting RF Activities at the IPN Orsay Laboratory
|
cavity, proton, SRF, EURISOL |
37 |
|
- T. Junquera
IN2P3-CNRS, Orsay
|
|
TUP02 |
Design Study of a 176 MHz SRF Half Wave Resonator for the SPIRAL-2 Project
|
cavity, linac, cryomodule, solenoid |
269 |
|
- J.-L. Biarrotte, S. Blivet, S. Bousson, T. Junquera, G. Olry, H. Saugnac
IN2P3-CNRS, Orsay
|
|
TUP06 |
Quarter-wave Cavities for the SPIRAL 2 Project
|
cavity, linac, coupling, simulation |
290 |
|
- G. Devanz, J.-M. Baze, P.-E. Bernaudin, P. Bosland, S. Chel, Y. Morin, F. Nunio
CEA-Saclay, Gif-sur-Yvette
|
|
TUP20 |
Lead-Tin Plating Split Loop Resonators
|
linac, cavity, cathode, electron |
330 |
|
- N.R. Lobanov, D.C. Weisser
ANU, Canberra
|
|
TUP21 |
Multi-Stub Superconducting RF Resonators for the ANU Heavy Ion Accelerator
|
simulation, cavity, linac, controls |
334 |
|
- N.R. Lobanov, D.C. Weisser
ANU, Canberra
- E. Zaplatin
FZJ, Jülich
|
|
TUP37 |
UHV Arc Deposition for RF Superconducting Cavity
|
cathode, cavity, laser, vacuum |
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
|
|
TUT01 |
Low and Intermediate Beta Cavity Design
|
cavity, impedance, SRF, linac |
486 |
|
- J.R. Delayen
JLAB, Newport News
|
|
|
Slides
|
|
WEO08 |
Development of Superconducting Intermediate Velocity Cavities for the U.S. RIA Project
|
cavity, RIA, linac, niobium |
539 |
|
- K.W. Shepard
ANL, Argonne
|
|
|
Slides
|
|
WEO12 |
Voltage Breakdown and the Processing Mechanism
|
niobium, cathode, electron, cavity |
551 |
|
- G.R. Werner, H. Padamsee, D.P. Lundberg, A.S. Romanenko, J.E. Shipman, L.T. Ying
Cornell University, Ithaca, New York
|
|
|
Slides
|
|
WET02 |
Fundamentals of Electrochemistry - The Electrolytic Polishing of Metals: Application to Copper and Niobium
|
niobium, controls, cavity, polarization |
579 |
|
- V. Palmieri
INFN/LNL, Legnaro, Padova
|
|
|
Slides
|
|
THP06 |
Wet Oxidation of an Epitaxial Niobium Film
|
niobium, lattice, cavity, 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, cavity |
604 |
|
- L.N. Hand, J.P. Craig, J.A. Thompson
Cornell University, Ithaca, New York
- W.R. Frisken
York University, Toronto
|
|
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, cavity, electron, MBA |
610 |
|
- K. Kowalski, A. Bernasik
AGH University of Science and Technology, Krakow
- W. Singer, X. Singer
DESY, Hamburg
- J. Camra
Jagellonian Univerity, Krakow
|
|
FRO03 |
High Intensity Proton Sources
|
linac, cavity, proton, SNS |
755 |
|
- A. Facco
INFN/LNL, Legnaro, Padova
|
|
|
Slides
|
|
FRO04 |
Rare Isotope (Heavy Ion) Accelerators
|
RIA, cavity, ISAC, GSI |
763 |
|
- S. Schriber, T.L. Grimm
NSCL, East Lansing, Michigan
|
|
|
Slides
|
|
FRO05 |
Future Stable-Particle Accelerators for Nuclear Physics
|
electron, linac, cavity, RHIC |
769 |
|
- L. Harwood
JLAB, Newport News
|
|
|
Slides
|
|