VIII  —  Synchrocyclotron Conversions and Improvements  

Chair: E.G. Michaelis

Paper Title Page
CYC69H01 The Harwell 110 in Synchrocyclotron Modification Scheme 673
 
  • J.P. Scanlon
    AERE, Harwell
 
CYC69H02 The Berkeley Synchrocyclotron Improvement Programme 688
 
  • K. MacKenzie
    UCLA, Los Angeles
  • L. Kanstein, R. Sorensen, L. Glasgow, J. Vale
    LRL, Berkeley
 
CYC69H03 Nevis Synchrocyclotron Conversion Project 699
 
  • J. Rainwater, R. Cohen, E. Martin, R. Schneider, K. Ziegler
    Columbia University, New York
  • S. Ohnuma
    Yale University, New Haven
 
CYC69H04 Some Peculiarities of Phase Motion in the Phasotron with Spatial Variation of Magnetic Field 711
 
  • V.P. Dmitrievsky, B.I. Zamolodchikov, N.I. Polumordvinova, V.V. Kolga
    JINR, Dubna, Moscow
 
CYC69H05 Status Report on the CERN Synchrocyclotron Improvement Programme 719
 
  • N. Vogt-Nilsen
    CERN, Geneva
 
CYC69H06 The Proton Source for the Improved CERN Synchrocyclotron 728
 
  • R. Galiana
    CERN, Geneva
 
CYC69H07 Factors Affecting Beam Intensity and Quality in Synchrocyclotrons 736
 
  • S. Holm
    CERN, Geneva
 
CYC69H08 Conversion Studies for the SREL 600-MeV Synchrocyclotron 749
 
  • M.P. Reiser, H. Kim, D. LeVine
    University of Maryland, College Park, Maryland
 
CYC69H09 Modification of a Conventional 37 in Cyclotron 768
 
  • L. Schecter, H.T. Easterday, P. Fessenden, L.W. Swenson, C.W. Rogers, M.A. Wilson
    Oregon State University, Oregon
 
CYC69H10 Resonant Proton Beam Depolarisation in a Synchrocyclotron 769
 
  • G. Besnier
    University of Rennes, Rennes-Beaulieu