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Frequency jump phenomena of e-fishbone mode during high-power ECRH on HL-2A

L.M. Yu, X.T. Ding, W. Chen, S.Y. Chen, Y.B. Dong, X.Q. Ji, Y.P. Zhang, Z.B. Shi, Yi. Liu, J.X. Li2013年被引用 18Nuclear FusionIF 3出版社

Fishbone instability excited by energetic electrons during electron cyclotron resonant heating (ECRH) is identified on HL-2A. With high-power ECRH, periodic frequency jump phenomena are observed by soft x-ray arrays. Soft x-ray tomography shows that the poloidal and toroidal mode numbers are 1/1 and 2/2 with the frequency jump. There is an ECRH power threshold for the frequency jump phenomena, which is generally about 0.9 MW. The frequencies of the two modes increase with the ECRH power. Experiments show that trapped particles are dominant in the low-density high-power ECRH plasma. The precessional frequency of the energetic trapped electrons is calculated with different discharge parameters. The results indicate that the energy of resonant electrons is in agreement with the hard x-ray measurement.

日本語訳

電子サイクロトロン共鳴加熱(ECRH)中の高エネルギー電子によって励起されるフィッシュボーン不安定性がHL-2Aで同定された。高出力ECRHにより、周期的な周波数ジャンプ現象が軟X線アレイによって観測される。軟X線トモグラフィーは、周波数ジャンプに伴ってポロイダルおよびトロイダルモード数が1/1および2/2であることを示す。周波数ジャンプ現象にはECRHパワー閾値が存在し、それは一般に約0.9 MWである。2つのモードの周波数はECRHパワーとともに増加する。実験は、低密度高出力ECRHプラズマにおいて捕捉粒子が支配的であることを示す。高エネルギー捕捉電子の歳差運動周波数は、異なる放電パラメータを用いて計算される。その結果は、共鳴電子のエネルギーが硬X線測定と一致することを示す。

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Electron cyclotron heatingHL-2A
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