IV  —  Beam Quality  

Chair: H.A. Willax

Paper Title Page
CYC69D01 Optimisation of the Cyclotron Central Region for the Nuclear Physics User 257
 
  • H.G. Blosser
    MSU, East Lansing, Michigan
 
CYC69D02 Some Factors Determining the Beam Quality of A.V.F. Cyclotrons 274
 
  • H.L. Hagedoorn
    Technological University, Eidenhoven
  • N. Hazewindus, J.M. Van Nieuwland
    Philips Research Laboratories, Geldrop
 
CYC69D03 The Effects of Central-region Conditions on Time Structure and Quality of Cyclotron Beams 289
 
  • M.P. Reiser
    University of Maryland, College Park, Maryland
 
CYC69D04 The Longitudinal Space Charge Effect and Energy Resolution 305
 
  • M.M. Gordon
    MSU, East Lansing, Michigan
 
CYC69D05 Harmonic Operation of the Harwell Variable Energy Cyclotron 318
 
  • K.J. Howard, E.J. Jones
    AERE, Harwell
 
CYC69D06 Cyclotron Beam Pulser for Particle Time-of-flight Experiments 325
 
  • W.P. Johnson
    University of Maryland, Maryland
  • H.G. Blosser, P. Sigg
    MSU, East Lansing, Michigan
 
CYC69D07 Phase-space Volume Measurements on the Nuffield 60in Cyclotron 333
 
  • K.V. Ettinger, J.F.B. Dealler, F.R. Stewart
    University of Birmingham, Birmingham
 
CYC69D08 The External Beam Mono-chromatisation System in the 2.4m Isochronous Cyclotron at the Kurchatov Atomic Energy Institute 341
 
  • N.I. Venikov, K.N. Korol, N.N. Poselsky
    Kurchatov Atomic Energy Institute, Moscow
  • Yu.G. Basargin, V.I. Bogdanova, Yu.P. Severgin
    Efremov Research Institute, Leningrad
 
CYC69D09 Emittance Measurements at the Jülich Isochronous Cyclotron (JULIC) 348
 
  • W. Kuhlmann, J. Bojowald, C. Mayer-Böricke, J. Reich
    Institut für Kernphysik, Jülich
 
CYC69D10 Proposed Use of a Storage Ring to Improve the Microscopic Duty Factor of a Cyclotron 357
 
  • B.T. Wright
    UCLA, California
 
CYC69D11 On the Production of Monochromatic Beams Using Cyclotron Acceleration 363
 
  • R.N. Litunovsky, Yu.G. Basargin, O.A. Minyaev
    Efremov Research Institute, Leningrad
 
CYC69D12 Peculiarities of Charged Particle Motion in the Monoenergetic Cyclotron 370
 
  • V.P. Dmitrievsky, V.V. Kolga, N.I. Polumordvinova
    JINR, Dubna, Moscow
 
CYC69D13 Spectometric Isochronous Cyclotron 375
 
  • A.A. Kolomensky, Yu.K. Khokhlov
    Lebedev Physical Institute, Moscow
  • I.Ya. Barit, V.N. Kanunnikov, L.N. Katsaurov, E.M. Moroz, L.N. Netchaeva, A.P. Fataev, I.V. Shtranikh, O.A. Gusev, R.N. Litunovsky, I.F. Malishev, O.A. Minyaev, M.P. Svinyin
    Lebedev Physical Institute and Efremov Institute,
  • G.A. Vasilyev, Yu.G. Basargin
    Efremov Research Institute, Leningrad
 
CYC69D14 High Resolution Nuclear Studies Using Cyclotron Beams 380
 
  • E. Kashy, G.F. Trentelman, R.K. Jolly
    MSU, East Lansing, Michigan
 
CYC69D15 Operational Experience with the H- Beam of the Milan Cyclotron 388
 
  • G. Dutto, E. Acerbi, G. Strini, C. Succi
    INFN, Milan
  • C. Birattari, M. Castiglioni, G. Fait
    University of Milan, Milan
 
CYC69D16 Multi-Channel Non-Intercepting Phase Probe for the University of Maryland Cyclotron 399
 
  • J.K. Bird, R.E. Berg
    University of Maryland, College Park, Maryland
 
CYC69D17 A Non-intercepting Cyclotron Beam Monitor 403
 
  • K.V. Ettinger, F.R. Stewart
    University of Birmingham, Birmingham
 
CYC69D18 The RF System of the Monoenergetic Cyclotron 410
 
  • A.A. Glazov, V.A. Kochkin, D.L. Novikov, L.M. Onischenko
    JINR, Dubna, Moscow
 
CYC69D19 The Magnetic System of the Monoenergetic Cyclotron 414
 
  • S.B. Vorozhtsov, B.I. Zamolodchikov, N.L. Zaplatin
    JINR, Dubna, Moscow