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Keyword: impedance

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MPPB016 A Model for Producing Stable, Broadband Terahertz Coherent Synchrotron Radiation in Storage Rings coherent-effects, synchrotron-radiation, wakefield 863
 
  • J. Byrd, A. Loftsdottir, M.C. Martin, F. Sannibale, M. Venturini (LBNL)
 
MPPG013 Calculation of the Coherent Synchrotron Radiation Impedance from a Wiggler coherent-effects, insertion-device, synchrotron-radiation, wakefield 1038
 
  • J. Wu, T.O. Raubenheimer, G.V. Stupakov (SLAC)
 
TPAE012 HOM Damping Performance of JLAB SL21 Cryomodule beam-losses, cryomodule, damping, higher-order-mode 1104
 
  • H. Wang, K. Beard, I. Campisi, J. Mammosser, J. Preble, R.A. Rimmer (Thomas Jefferson National Accelerator Facility), C. Thomas-Madec (SOLEIL)
 
TPAB005 Impedance Measurements of a HOM-Damped Low Power Model Cavity damping, higher-order-mode, rf cavities, storage-ring 1189
 
  • F. Marhauser, E. Weihreter (BESSY), C. Weber (Technical University, Berlin)
 
TPAB030 Transverse Impedance Bench Measurements in NLC/JLC Accelerating Structures higher-order-mode, rf cavities 1261
 
  • N. Baboi, G. Bowden, R.M. Jones, J.R. Lewandowski, S.G. Tantawi (SLAC)
 
TPAB034 Circuit and Scattering Matrix Analysis of the Wire Measurement Method of Beam Impedance in Accelerating Structures simulation, wakefield, x-band 1270
 
  • R.M. Jones, N. Baboi, S.G. Tantawi (SLAC), N.M. Kroll (University of California, San Diego)
 
TPAB072 The Numerical Analysis of Higher-Order Modes for Superconducting RF Cavity at SRRC light source, parallel computing, superconducting-rf, wakefield 1368
 
  • P.J. Chou (Synchrotron Radiation Research Center)
 
TPAB083 Towards Strongly HOM-Damped Multi-Cell RF Cavities electromagnetic-fields, higher-order-mode, rf cavities, superconducting-rf 1389
 
  • R.A. Rimmer, H. Wang, G. Wu (Thomas Jefferson National Accelerator Facility), D. Li (LBNL)
 
TPAG023 Electrical Power and Grounding Systems Study and Improvement at TLS instability, monitoring 1476
 
  • J.C. Chang, J.R. Chen, K.C. Kuo, S.C. Lei, Y.C. Lin (Synchrotron Radiation Research Center)
 
TPPB079 Design Study of 1 MHz Induction Cavity for Induction Synchrotron accelerator, electromagnetic-fields, induction, synchrotron 1784
 
  • K. Torikai, Y. Arakida, S. Inagaki, J. Kishiro, K. Koseki, E. Nakamura, K. Takayama, T. Toyama, M. Wake (KEK), K. Ishibashi (Kyushu University)
 
TPPB090 Bench Measurements of Low Frequency Transverse Impedance resistive wall, transverse-dynamics 1801
 
  • A. Mostacci (University of Rome), U. Iriso-Ariz (BNL), F. Caspers, L. Vos (CERN)
 
WOAB011 Transverse Impedance Distribution Measurements Using Response Matrix Fit Method at APS lattice, transverse-dynamics 417
 
  • V. Sajaev (ANL)
 
RPAB009 CTF3 Prototypes: Design, Tests and Measurements diagnostics, longitudinal-dynamics, rf-structure 2742
 
  • A. Ghigo, D. Alesini, C. Biscari, R. Boni, A. Clozza, G. Delle Monache, A. Drago, A. Gallo, F. Marcellini, C. Milardi, C. Sanelli, M. Serio, F. Sgamma, A. Stecchi, A. Stella, M. Zobov (INFN), R. Corsini, L. Rinolfi (CERN)
 
RPAG052 Coupling Impedances for Corrugated Beam Pipes from Impedance Boundary Conditions electromagnetic-fields 2993
 
  • S. Petracca, Th. Demma (University of Sannio and INFN)
 
RPPB001 Vertical Coupling Impedance of the APS Storage Ring coherent-effects 3008
 
  • Y.-C. Chae, K. Harkay, X. Sun (ANL)
 
RPPB002 Horizontal Coupling Impedance of the APS Storage Ring coherent-effects 3011
 
  • Y.-C. Chae, K. Harkay, X. Sun (ANL)
 
RPPB003 Longitudinal Coupling Impedance of the APS Storage Ring coherent-effects 3014
 
  • Y.-C. Chae, K. Harkay, X. Sun (ANL)
 
RPPB004 The Impedance Database and its Application to the APS Storage Ring coherent-effects 3017
 
  • Y.-C. Chae (ANL)
 
RPPB005 Bunch Length Measurements at BESSY coherent-effects, collective-effects, single-bunch, streak camera 3020
 
  • P. Kuske, M. Abo-Bakr, W. Anders, G. Wüstefeld (BESSY)
 
RPPB010 Coupling Impedance Measurements of the SNS RF Cavity and Extraction Kicker Magnet rf cavities 3035
 
  • H. Hahn, M. Blaskiewicz, D. Davino (BNL)
 
RPPB013 Coherent Tune Shifts Measured with Few Bunches in the SPS and Comparison with Resistive Wall Theory coherent-effects, collective-effects, resistive wall 3044
 
  • H. Burkhardt, A. Koschik, G. Rumolo, F. Zimmermann, B. Zotter (CERN)
 
RPPB015 Nominal Longitudinal Parameters for the LHC Beam in the CERN SPS beam-loading, instability, longitudinal-dynamics, radio-frequency 3050
 
  • E. Shaposhnikova, P. Baudrenghien, T. Bohl, T. Linnecar, J. Tuckmantel (CERN)
 
RPPB022 Impedances of Tevatron Separators   3065
 
  • K.Y. Ng (FNAL)
 
RPPB028 Bunch Lengthening Recently Observed at PF-AR coherent-effects, longitudinal-dynamics, single-bunch 3077
 
  • T. Ieiri, T. Kasuga, Y. Minagawa, T. Obina (KEK), T. Fujita (Hiroshima University)
 
RPPB035 Status of the Experimental Studies of the Electron Cloud at the Los Alamos Proton Storage Ring electron cloud, instability, proton 3089
 
  • R.J. Macek, M. Borden, A. Browman, D. Fitzgerald, R. McCrady, T. Spickermann, T. Zaugg (LANL)
 
RPPB038 RF Impedance Measurements on the DARHT-II Accelerator Intercell Assembly electromagnetic-fields, induction 3098
 
  • W. Fawley, S. Eylon (LBNL), R. Briggs (Science Applications International Corporation)
 
RPPB043 Beam Instabilities at the PLS Storage Ring collective-effects, instability 3105
 
  • E.-S. Kim (Pohang Accelerator Laboratory)
 
RPPB051 Instability Driven by Wall Impedance in Intense Charged Particle Beams instability, space-charge 3117
 
  • R.C. Davidson, H. Qin (Plasma Physics Laboratory, Princeton University), G. Shvets (Illinois Institute of Technology)
 
RPPB061 Evolving Bunch and Retardation in the Impedance Formalism instability, longitudinal-dynamics, wakefield 3144
 
  • R. Warnock (SLAC), M. Venturini (LBNL)
 
RPPG027 Impact of the Wiggler Coherent Synchrotron Radiation Impedance on the Beam Instability coherent-effects, collective-effects, instability, synchrotron-radiation 3231
 
  • J. Wu, Z. Huang, T.O. Raubenheimer, G.V. Stupakov (SLAC)
 
FPAG007 Evaluation of the Horizontal to Vertical Transverse Impedance Ratio for LHC Beam Screen Using a 2D Electrostatic Code electromagnetic-fields 3479
 
  • U. Iriso-Ariz (BNL), F. Caspers (CERN), A. Mostacci (University of Rome)
 

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