X  —  Tuesday Morning Session: Students/ Young Researchers Presentations  

Chair: E. Palmieri

Paper Title Page
TUA05 High-Current SRF Cavity Design 181
 
  • D. Meidlinger, T.L. Grimm, W. Hartung
    MSU, East Lansing, Michigan
 
TUA06 Mechanical Properties of Spoke Resonators 185
 
  • Z.A. Conway, K.W. Shepard, M.P. Kelly, J.D. Fuerst, M. Kedzie
    ANL, Argonne
 
TUA07 ERL 5-Cell Cavity Design for High Currents 188
 
  • R. Calaga
    BNL, Upton, Long Island, New York
 
TUA08 High Field Q-Slope's Studies Using Thermometry 189
 
  • G. Eremeev, H. Padamsee
    Cornell University, Ithaca, New York
 
TUA09 SC Cavities at 3.9 GHz 193
 
  • T. Koeth
    Fermilab, Batavia
 
TUA10 Surface Studies of Niobium Chemically Polished Under Conditions for SRF Cavity Production 193
 
  • H. Tian, M. Kelley, C. Reece, L. Plucinski, K. Smith, S. Wang
    JLAB, Newport News
 
TUA11 General Automation of LLRF Control for Superconducting Accelerators 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 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 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 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 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 218
 
  • P. Sekalski, A. Napieralski
    Technical University of Łódź-DMSC, Łódź
  • S. Simrock
    DESY, Hamburg