• DocumentCode
    1066047
  • Title

    Cathode effects on a relativistic magnetron driven by a microsecond e-beam accelerator

  • Author

    Lopez, Mike R. ; Gilgenbach, Ronald M. ; Jordan, David W. ; Anderson, Scott A. ; Johnston, Mark D. ; Keyser, Marc W. ; Miyake, Hiroto ; Peters, Christopher W. ; Jones, Michael C. ; Neculaes, V. Bogdan ; Lau, Yue Ying ; Spencer, Thomas A. ; Luginsland, Joh

  • Author_Institution
    Intense Energy Beam Interaction Lab., Michigan Univ., Ann Arbor, MI, USA
  • Volume
    30
  • Issue
    3
  • fYear
    2002
  • fDate
    6/1/2002 12:00:00 AM
  • Firstpage
    947
  • Lastpage
    955
  • Abstract
    Experiments have been performed on a relativistic magnetron driven at e-beam accelerator peak parameters: voltage = -0.4 MV, current = 16 kA, and pulselength = 0.5 μs. The magnetron is a six-vane device operating at about 1 GHz with extraction from two cavities. For equal power in both extraction waveguides, the peak microwave power of this device is between 200 and 300 MW. Microwave pulse-shortening limits pulselengths to the range of 10-100 ns. Time-frequency analysis of microwave emission indicates operation at about 1.03 GHz, close to the pi mode frequency identified from cold tests and the three-dimensional MAGIC code. Two cold cathodes were tested: 1) an emitting aluminum knob in the vane region with no endcap and 2) an extended cathode with a graphite fiber emission region in the vanes and endcap outside the vanes. Electron endloss current has been measured for the two cathodes. With no endcap, the cathode exhibited endloss current fraction up to 50% of the total; with one endcap, the cathode reduced the endloss current fraction to as little as 12%. Both cathodes produced peak total-electronic efficiency in the range of 14%-21%.
  • Keywords
    electron accelerators; magnetrons; relativistic electron beam tubes; -0.4 MV; 1 GHz; 1.03 GHz; 16 kA; 200 to 300 MW; cathode effects; electron endloss current; extended cathode; extraction waveguides; graphite fiber emission region; microsecond electron-beam accelerator; microwave emission; microwave power; microwave pulse-shortening; relativistic magnetron; six-vane device; three-dimensional MAGIC code; time-frequency analysis; total-electronic efficiency; Acceleration; Accelerator magnets; Aluminum; Blades; Cathodes; Magnetic devices; Microwave devices; Testing; Time frequency analysis; Voltage;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2002.801543
  • Filename
    1158329