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LeBlanc, G.

Paper Title Page
TUPC010 Single Bunch Studies at the Australian Synchrotron 1062
 
  • R. T. Dowd, M. J. Boland, G. LeBlanc, M. J. Spencer, Y. E. Tan
    ASP, Clayton, Victoria
 
  Studies using a single high charge electron bunch have been conducted at the Australian Synchrotron to characterise the impedance of the machine at various stages of commissioning and insertion device configuration. This paper will present the results of these studies and show the time evolution of machine impedance with increasing number of insertion devices.  
THPC135 Vertical Emittance Measurements and Optimisation at the Australian Synchrotron 3303
 
  • M. J. Spencer, R. T. Dowd, G. LeBlanc
    ASP, Clayton, Victoria
 
  Adjustment to the vertical emittance of the Australian Synchrotron storage ring was made using 28 skew quadrupoles. The skew quadrupole settings were calculated using the LOCO method which uses measurements of vertical dispersion as well as transverse coupling. The vertical emittance was monitored indirectly through lifetime, tune crossing, x-ray pinhole camera and calibrated model calculations. The paper outlines the results of these studies.  
THPC136 Design and Commissioning of a Bunch by Bunch Feedback System for the Australian Synchrotron 3306
 
  • M. J. Spencer, G. LeBlanc, K. Zingre
    ASP, Clayton, Victoria
 
  A transverse bunch feedback system has been designed in order to fight the effects of coupled bunch instabilities. This system is currently in the commissioning phase. A digital system was chosen because of its flexibility and diagnostic potential. While the major components were sourced from a private company, time has also been spent on in house development of an analogue front-end and the diagnostic components of the software.