Title :
Development of the step tunable 140/110 GHz 1 MW gyrotron for fusion
Author :
Bogdashov, Alexander A. ; Chirkov, A.V. ; Denisov, Gregory G. ; Kuftin, A.N. ; Lygin, V.K. ; Moiseev, M.A. ; Zapevalov, V.E.
Author_Institution :
Inst of Appl. Phys., GYCOM Ltd., Nizhny Novgorod, Russia
Abstract :
Electron-cyclotron heating and current control in plasma set-ups require gyrotrons with a level of CW power up to 1 MW at frequencies 80-170 GHz and efficiency not less than 50%. The output window was the key factor that limited the achievable pulse duration in gyrotrons. The CVD diamond single disk window is capable of full 1 MW CW operation. Recent results generated interest in the use of frequency tunable gyrotrons for ECRH plasma experiments. In this paper we discuss the main problems of the step tunable gyrotron and present the design of a step tunable 110/140 GHz 1 MW gyrotron. The 80 kV, 40 A beam is produced by a magnetron injection gun (MIG) with an average perpendicular-to-parallel velocity ratio of 1.2 and a transversal velocity spread below 25%. The microwave circuit has a TE/sub 22.81/-TE/sub 19.61/ cavity, which operates at 140 GHz and 111.5 GHz respectively. Electron beam parameters were optimized for efficient generation of the modes. These modes were chosen from the condition of the gyrotron CVD window transparency at the operation frequencies. The highly efficient quasi-optical mode converter was elaborated for operation with two different cavity modes.
Keywords :
cavity resonators; electron optics; gyrotrons; millimetre wave tubes; plasma radiofrequency heating; tuning; 1 MW; 110 GHz; 111.5 GHz; 140 GHz; 40 A; 80 kV; C; CVD diamond single disk window; CW operation; ECRH plasma experiments; EHF; MIG; MM-wave tube; TE/sub 22.81/-TE/sub 19.61/ cavity; cavity modes; current control; dual frequency gyrotron; electron beam parameters optimisation; electron-cyclotron heating; frequency tunable gyrotrons; fusion experiments; gyrotron CVD window transparency; magnetron injection gun; megawatt gyrotron; plasma heating; quasi-optical mode converter; step tunable gyrotron; Current control; Electromagnetic heating; Electron beams; Frequency; Gyrotrons; Microwave circuits; Particle beam injection; Plasmas; Tellurium; Tunable circuits and devices;
Conference_Titel :
Infrared and Millimeter Waves, 2000. Conference Digest. 2000 25th International Conference on
Conference_Location :
Beijing, China
Print_ISBN :
0-7803-6513-5
DOI :
10.1109/ICIMW.2000.892920