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electron

Paper Title Other Keywords Page
A01 Relevance of Linacs linac, neutron, photon, proton 2
 
  • L. Rosen
    LASL, Los Alamos, New Mexico, USA
 
D01 Current Status of Superconducting Accelerator Technology cavity, niobium, ion, SLAC 82
 
  • P.B. Wilson
    SLAC, Stanford, California, USA
 
D02 Magnetization Curves of Superconductors - Type I, Type II and Type III superconductivity, cavity, controls, vacuum 90
 
  • B.T. Matthias
    University of California, San Diego, California, USA
 
E02 Recent Measurements of S-Band and L-Band Cavities at Stanford cavity, radiation, vacuum, multipactoring 98
 
  • C. Lyneis, M. McAshan, V. Nguyen
    Stanford University, Stanford, California, USA
 
F02 Beam Performance of the Superconducting Injector for the Stanford Linear Electron Accelerator cavity, gun, injection, bunching 126
 
  • L.R. Suelzle, E.E. Chambers
    Stanford University, Stanford, California, USA
 
F03 Beam Breakup in a Superconducting Electron Accelerator coupling, impedance, resonance, cavity 131
 
  • K. Mittag, H.D. Schwarz, H.A. Schwettman
    Stanford University, Stanford, California, USA
 
F04 Beam Tests with S-Band Standing Wave Accelerators Using On-Axis Couplers injection, coupling, cavity, gun 140
 
  • S.O. Schriber, L.W. Funk, E.A. Heighway
    Atomic Energy of Canada, Chalk River, Ontario, Canada
 
F05 A Summary of Measurements on Superconducting Helically Loaded Resonators cavity, niobium, vacuum, shielding 145
 
  • J.E. Vetter, J.L. Fricke, B. Piosczyk
    FZK, Karlsruhe, Germany
 
G03 Progress in the Development of Superconducting Resonators for Heavy Ion Acceleration controls, acceleration, heavy-ion, proton 168
 
  • W.J. Ramler, J. Aron, R. Benaroya, K.E. Gray, A.H. Jaffey, K. Johnson, T. Khoe, J.J. Livingood, J.M. Nixon, G.W. Parker, W.A. Wesolowski
    ANL, Argonne, Illinois, USA
 
G04 The Stanford Recirculating Linear Accelerator SLAC, klystron, lattice, radiation 175
 
  • W.K.H. Panofsky
    SLAC, Stanford, California, USA
 
H03 Modern Electron Linacs and New User Needs linac, induction, storage-ring, recirculation 197
 
  • J.E. Leiss
    National Bureau of Standards, Washington, D.C., USA
 
H04 Pulsed Drift Tube Quadrupole Magnets with High Precision linac, quadrupole, radiation, storage-ring 205
 
  • H. Baba, S. Inagaki, M. Kobayashi, S. Okumura, J. Tanaka
    KEK, Ibaraki-ken, Japan
 
I02 The Chalk River High Current Test Facility linac, vacuum, controls, coupling 218
 
  • B.G. Chidley, J.C. Brown, S.B. Hodge, J.H. Ormrod, J. Ungrin
    Atomic Energy of Canada, Chalk River, Ontario, Canada
 
I04 High Power Operation of Two Side-Coupled Standing Wave Linac Structures cavity, coupling, klystron, controls 233
 
  • J. McKeown, H.R. Schneider, S.O. Schriber
    Atomic Energy of Canada, Chalk River, Ontario, Canada
 
J04 Linac-Type RF Structures for High Energy Storage Rings cavity, impedance, coupling, storage-ring 279
 
  • M.A. Allen, P.B. Wilson
    SLAC, Stanford, California, USA
 
K02 Collective Phenomena in Accelerators proton, CERN, storage-ring, damping 291
 
  • A.M. Sessler
    LBL, Berkeley, California, USA
 
P09 Real-Time Measurements of Proton Bunch Form proton, bunching, impedance, linac 349
 
  • L.R. Evans, D.J. Warner
    CERN, Geneva, Switzerland
 
P10 The Source of Negative Ions ion, extraction, emittance, cathode 356
 
  • V.P. Golubev, G.A. Nalivaiko, S.G. Tsepakin
    D.V. Efremov Scientific Research Institute of Electrophysical Apparatus, Leningrad, USSR
 
P14 Operation and Performance of the High-Intensity Proton Injector of LAMPF ion, emittance, radiation, proton 378
 
  • D.W. Mueller, C.R. Emigh, B.C. Goplen, E.A. Meyer, M.A. Paciotti, R.R. Stevens, Jr.
    LASL, Los Alamos, New Mexico, USA
 
P21 Some High Resolution Techniques for Use with Negative Ion Beams proton, ion, scattering, linac 415
 
  • J.E. Spencer, H.A. Thiessen
    LASL, Los Alamos, New Mexico, USA
 
P23 The LAMPF Klystron Repair Facility klystron, cathode, vacuum, gun 427
 
  • P.J. Tallerico
    LASL, Los Alamos, New Mexico, USA