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Design of a Large Orbit Gyrotron with a Permanent Magnet System
Authors:V Zapevalov  T Idehara  S Sabchevski  K Ohashi  V Manuilov  M Glyavin  S Kornishin  A Kuftin  V Lygin  O Malygin  M Moiseev  A Pavel'ev  V Tzalolikhin  N Zavolsky  H Kobayashi  T Yokoyama  I Ogawa  S Mitsudo  T Kanemaki  Y Iwata  H Hoshizuki
Affiliation:1. Institute of Applied Physics, Russian Academy of Sciences, GYCOM Ltd., Nizhny Novgorod, Russia
2. Research Center for Development of Far-Infrared Region, Fukui University, Fukui, Japan
3. Institute of Electronics of the Bulgarian Academy of Sciences, Sofia, Bulgaria
4. Magnetic Materials R&D Center, Shin-Etsu Chemical Co., LTD, Takefu-shi, Fukui, Japan
5. Nizhny Novgorod State University, N. Novgorod, Russia
6. Faculty of Engineering, Fukui University, Fukui, Japan
Abstract:The paper presents results of numerical analysis and outlines the computer-aided design of a novel high-harmonic gyrotron with a beam of electrons gyrating along axis-encircling trajectories. The electron beam is formed by a novel electron-optical system (EOS) based on an electron gun of diode type with thermionic cathode and gradual reversal of the magnetic field. The results of numerical simulations predict satisfactory performance of the EOS and appropriate beam quality parameters. The tube design allows one to install different cavities optimized for excitation of TE4,1 mode at the fourth harmonic of the cyclotron frequency or TE3,1 mode at the third one. The target parameters of the device are: frequency about 112 GHz; output power near 1 kW and efficiency of several percent.
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