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Stochastic acceleration of relativistic electrons and plasma heating and current drive with 2.45 GHz frequency at the WEGA stellarator

H P Laqua, E Chlechowitz, M Otte, T Stange2014年Plasma Physics and Controlled FusionIF 2.2出版社

MeV electrons were produced with less than 6 kW of non-resonant 2.45 GHz microwave heating at magnetic fields of 0.3–0.5 T with no applied loop voltage at the WEGA stellarator. The maximum toroidal plasma current, carried by the electrons, was 1 kA. Broadband radiation, similar to synchrotron radiation, was measured in the 0.5–120 GHz range. X-ray radiation from the plasma and directed γ-ray emission from collisions of the electrons with nearby plasma-facing components was measured as well. The acceleration process was modeled by a tail formation due to stochastic interaction with the radio frequency field at the antenna mouth. The characteristic time for tail formation could be reproduced with power modulation experiments.

日本語訳

MeV電子は、0.3〜0.5 Tの磁場において、印加ループ電圧なしで、6 kW未満の非共鳴2.45 GHzマイクロ波加熱により生成された。最大トロイダルプラズマ電流は、電子によって担われ、1 kAであった。0.5〜120 GHzの範囲で、シンクロトロン放射に類似した広帯域放射が測定された。プラズマからのX線放射と、近傍のプラズマ対向部品への電子衝突による指向性γ線放出も測定された。加速過程は、アンテナ口における高周波場との確率的相互作用によるテール形成としてモデル化された。テール形成の特性時間は、パワー変調実験により再現できた。

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StellaratorCurrent driveRelativistic electronPlasma heating
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