• DocumentCode
    1056059
  • Title

    A high harmonic gyrotron with an axis-encircling electron beam and a permanent magnet

  • Author

    Idehara, Toshitaka ; Ogawa, Isamu ; Mitsudo, Seitaro ; Iwata, Yousuke ; Watanabe, Satoru ; Itakura, Yutaka ; Ohashi, Ken ; Kobayashi, Hideki ; Yokoyama, Tomonori ; Zapevalov, Vladimir E. ; Glyavin, Mikhail Yu ; Kuftin, Andrey N. ; Malygin, Oleg V. ; Sabch

  • Author_Institution
    Res. Center for Dev. of Far-Infrared Region, Fukui Univ., Japan
  • Volume
    32
  • Issue
    3
  • fYear
    2004
  • fDate
    6/1/2004 12:00:00 AM
  • Firstpage
    903
  • Lastpage
    909
  • Abstract
    A gyrotron with an axis-encircling electron beam is capable of high-frequency operation, because the high-beam efficiency is kept even at high harmonics of the electron cyclotron frequency. We have designed and constructed such a gyrotron with a permanent magnet. The gyrotron has already operated successfully at the third, fourth, and fifth harmonics. The frequencies are 89.3, 112.7, and 138 GHz, respectively, and the corresponding cavity modes are TE311, TE411, and TE511. The permanent magnet system is quite novel and consists of many magnet elements made of NbFeB and additional coils for controlling the field intensities in the cavity and electron gun regions. The magnetic field in the cavity region can be varied from 0.97 to 1.18 T. At the magnetic field intensities, the output powers at the third and the fourth harmonics are 1.7 and 0.5 kW, respectively. The gyrotron is pulsed, the pulse length is 1 ms and the repetition frequency is 1 Hz. The beam energy is 40 kV and the beam current is 1.2-1.3 A. Beam efficiencies and emission patterns have also been measured. In this paper, the experimental results of the gyrotron are described and compared with computer simulations.
  • Keywords
    boron alloys; electron beams; ferromagnetic materials; gyrotrons; iron alloys; niobium alloys; permanent magnets; 0.5 kW; 0.97 to 1.18 T; 1 Hz; 1 ms; 1.2 to 1.3 A; 1.7 kW; 112.7 GHz; 138 GHz; 40 kV; 89.3 GHz; NbFeB; axis-encircling electron beam; beam current; beam energy; cavity modes; cavity region; electron cyclotron frequency; electron gun region; fourth harmonics; high harmonic gyrotron; high-beam efficiency; high-frequency operation; magnetic field; permanent magnet; third harmonics; Coils; Control systems; Cyclotrons; Electron beams; Frequency; Gyrotrons; Magnetic fields; Permanent magnets; Pulse measurements; Tellurium; Axis-encircling electron beam; gyrotron; high harmonic; permanent magnet;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2004.827614
  • Filename
    1321250