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MOP010 Superconducting RF Activities at JAERI linac, JAERI, FEL, plasma 62
 
  • N. Ouchi
    JAERI, Ibaraki
 
MOP012 Operation of the S-DALINAC, Related Topics and Developments cavity, scattering, linac, recirculation 65
 
  • H.-D. Gräf, M. Brunken, S. Döbert, H. Genz, M. Gopych, S. Khodyachykh, S. Kostial, U. Laier, H. Loos, A. Richter, S. Richter, B. Schweizer, A. Stascheck, O. Titze
    TU Darmstadt, Darmstadt
  • R. Eichhorn
    GSI, Darmstadt
 
TUA004 High-Field Q Slope in Superconducting Cavities due to Magnetic Field Enhancement at Grain Boundaries cavity, niobium, simulation, KEK 77
 
  • J. Knobloch, R.L. Geng, H. Padamsee
    Cornell University, Ithaca, New York
  • M. Liepe
    DESY, Hamburg
 
TUA006B How to Produce NbRRR~600 on an Industrial Scale controls, extraction, niobium, vacuum 100
 
  • F. Schoelz
    W.C. Heraeus GmbH & Co, Hanau
 
TUP003 Lead Plating: ANU SLRs Upgrade cavity, superconductivity, linac, vacuum 129
 
  • N.R. Lobanov, D.C. Weisser
    ANU, Canberra
 
TUP008 Analysis of the Losses of Superconducting Cavities as a Function of Field and Temperature cavity, niobium, superconducting-cavity, CERN 163
 
  • R. Parodi, R. Ballantini, A. Daccà, G. Gemme
    INFN Genova, Genova
 
TUP012 Polariton-like Interaction between Microwaves and Electronic Subsystem of Metal Oxide Superconductor resonance, lattice, superconductivity, radiation 187
 
  • A.L. Karuzskii, V.A. Dravin, Yu.F. Eltsev, V.N. Murzin, N.A. Osipova, A.V. Perestoronin, P.P. Sverbil
    Lebedev Physical Institute, Moscow
 
TUP014 Low Temperature Tensile and Fracture Toughness Properties of SCRF Cavity Structural Materials niobium, vacuum, cavity, cryogenics 195
 
  • V.T. Toplosky, R.P. Walsh
    National High Magnetic Field Laboratory, Tallahassee, Florida
  • R.C. Gentzlinger, R.R. Mitchell
    LANL, Los Alamos, New Mexico
 
TUP015 Cavity Baking : A Cure for the High Accelerator Field Qo Drop cavity, niobium, DESY, feedback 198
 
  • B. Visentin, J.P. Charrier, B. Coadou, D. Roudier
    CEA-Saclay, Gif-sur-Yvette
 
TUP018 Improvement of the Maximum Field of Accelerating Cavities by Dry Oxidization cavity, niobium, superconductivity, vacuum 211
 
  • R. Parodi, R. Ballantini, A. Daccà, G. Gemme
    INFN Genova, Genova
  • L. Mattera
    INFM Genova, Genova
 
TUP020 Accelerating Field Measurement in 3GHz Pulsed Cavities cavity, niobium, SLAC, klystron 234
 
  • C. Thomas, G. Bienvenu, J. Le Duff
    LAL, Orsay
 
TUP021 Micro-Structures of RF Surfaces in the Electron-Beam-Weld Regions of Niobium cavity, niobium, superconducting-cavity, superconductivity 238
 
  • R.L. Geng, J. Knobloch, H. Padamsee
    Cornell University, Ithaca, New York
 
TUP030 Long Term Air Exposure Effect on the Electropolished Surface of Niobium Superconducting RF Cavity cavity, niobium, KEK, vacuum 270
 
  • K. Saito, E. Kako, T. Shishido, S. Noguchi, M. Ono, Y. Yamazaki
    KEK, Ibaraki
 
TUP031 Temperature Dependence of the Surface Resistance of Niobium at 1300 MHz - Comparison to BCS Theory - cavity, niobium, KEK, vacuum 277
 
  • K. Saito
    KEK, Ibaraki
  • P. Kneisel
    JLAB, Newport News
 
TUP036 On Local High Electric Field-Induced Modifications of a Niobium Oxide Surface niobium, cavity, vacuum, superconductivity 304
 
  • I. Arfaoui, J. Cousty, H. Safa
    CEA-Saclay, Gif-sur-Yvette
 
WEP008 Modeling Secondary Emission in a Finite-Element Multipactor Code simulation, cavity, vacuum, multipactoring 390
 
  • S. Humphries
    University of New Mexico, Albuquerque
  • J. Petillo
    SAIC, Burlington, Massachusetts
  • N. Dionne
    Raytheon Corporation, Sudbury, Massachusetts
 
WEP015 Design and Test of a 1.3 GHz Travelling Wave Window vacuum, TESLA, cavity, pick-up 427
 
  • C. Travier, S. Chel, M. Desmons, G. Devanz
    CEA-Saclay, Gif-sur-Yvette
  • P. Lepercq, T. Garvey
    IN2P3-CNRS, Orsay
 
WEP017 Production of Superconducting 9-cell Cavities for the TESLA Test Facility, Stanford University and Forschungszentrum Rossendorf cavity, TESLA, niobium, DESY 440
 
  • H. Vogel, S. Bauer, W. Diete, B. Griep, M. Peiniger, M. Pekeler, J. Schwellenbach, P. vom Stein
    ACCEL, Bergisch Gladbach
 
WEP019 Development of Seamless Niobium Cavities for Accelerator Application cavity, niobium, controls, superconductivity 446
 
  • P. Kneisel
    JLAB, Newport News
  • V. Palmieri
    INFN/LNL, Legnaro, Padova
  • K. Saito
    KEK, Ibaraki
 
WEP027 Manufacturing Techniques of Full Scale Crab Cavities and a Simplified Co-Axial Coupler for KEKB cavity, KEK, KEKB, niobium 481
 
  • H. Hattori, M. Inoue, K. Ohkubo, K. Sennyu, T. Yamanaka
    MHI, Hyogo-ku, Kobe
  • Y. Taura
    MHI, Nishi-ku, Hiroshima
  • T. Ohta
    MHI, Arai-cho, Takasago
  • K. Hosoyama, T. Nakai
    KEK, Ibaraki
 
WEP028 High Force, Precision Positioning Using Magnetic Smart Materials cavity, SRF, controls, cryogenics 484
 
  • C. Joshi, B. Bent
    Energen Inc, Billerica, Massachusetts
  • M. Drury, J. Preble, V. Nguyen
    JLAB, Newport News
 
WEP033 Dissimilar Welds for the APT Superconducting Cavity's Cryogenic Plumbing System cavity, superconducting-cavity, cryogenics, cryomodule 508
 
  • M. Cola, R.M. Dickerson, R.C. Gentzlinger, D.F. Teter
    LANL, Los Alamos, New Mexico
 
WEP034 Production and Test of the Prototype β=0.85 Five Cell Cavity for the TRASCO Project cavity, LEP, niobium, CERN 512
 
  • R. Parodi, A. Daccà, G. Gemme
    INFN Genova, Genova
  • E. Chiaveri, R. Losito, S. Calatroni
    CERN, Geneva
  • D. Barni, A. Bosotti, C. Pagani, G. Varisco
    INFN Milano, Milano
 
THA004 Study of the Residual Resistance of Superconducting Niobium Films at 1.5 GHz niobium, cavity, CERN, cathode 550
 
  • A.-M. Valente, C. Benvenuti, S. Calatroni, P. Darriulat, M.A. Peck, C.A. Van't Hof
    CERN, Geneva
 
THA006 RF Power Coupler Performance at CESR and Study of a Multipactor Inhibited Coupler cavity, SRF, vacuum, multipactoring 560
 
  • E. Chojnacki, S. Belomestnykh
    Cornell University, Ithaca, New York
 
FRA002 High Power FELs Driven by RF Superconducting Linacs FEL, SRF, cavity, linac 593
 
  • G.R. Neil
    JLAB, Newport News
 
FRA005 ELFE at CERN CERN, LEP, cavity, linac 602
 
  • H. Burkhardt
    CERN, Geneva