DocumentCode :
1423389
Title :
2.2-MW Record Power of the 170-GHz European Preprototype Coaxial-Cavity Gyrotron for ITER
Author :
Rzesnicki, Tomasz ; Piosczyk, Bernhard ; Kern, Stefan ; Illy, Stefan ; Jin, Jianbo ; Samartsev, Andrey ; Schlaich, Andreas ; Thumm, Manfred
Author_Institution :
Inst. for Pulsed Power & Microwave Technol. (IHM), Karlsruhe Inst. of Technol., Karlsruhe, Germany
Volume :
38
Issue :
6
fYear :
2010
fDate :
6/1/2010 12:00:00 AM
Firstpage :
1141
Lastpage :
1149
Abstract :
A 2-MW continuous-wave (CW) 170-GHz coaxial-cavity gyrotron for electron cyclotron heating and current drive in the International Thermonuclear Experimental Reactor (ITER) is under development within the European Gyrotron Consortium (EGYC1), a cooperation between European research institutions. To support the development of the industrial prototype of a CW gyrotron, a short-pulse tube (preprototype) is used at KIT Karlsruhe (former FZK) for experimental verification of the design of critical components, like the electron gun, beam tunnel, cavity, and quasi-optical RF output coupler. Significant progress has been achieved recently. In particular, RF output power of up to 2.2 MW with 30% output efficiency has been obtained in single-mode operation at 170 GHz. Furthermore, a new RF output system has been designed, with an efficient conversion of the generated RF power into a Gaussian RF output beam. The results have been successful, yielding a Gaussian mode content ~96%.
Keywords :
electron guns; gyrotrons; European Gyrotron Consortium; European preprototype coaxial-cavity gyrotron; European research institutions; Gaussian RF output beam; IEEE electron gun; International Thermonuclear Experimental Reactor; KIT Karlsruhe; beam tunnel; cavity; continuous-wave coaxial-cavity gyrotron; current drive; efficiency 30 percent; electron cyclotron heating; frequency 170 GHz; power 2 MW; power 2.2 MW; quasi-optical RF output coupler; Coaxial cavity; RF output system; electron cyclotron heating of thermonuclear fusion plasmas; gyrotron; parasitic oscillations; quasi-optical (q.o.)-mode converter;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2010.2040842
Filename :
5418963
Link To Document :
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