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Effects of energetic-ion-driven instabilities on plasma heating, transport and rotation in toroidal systems

Ya.I. Kolesnichenko, Yu.V. Yakovenko, V.V. Lutsenko, R.B. White, A. Weller2010年被引用 12Nuclear FusionIF 3出版社

A theory is developed from which it follows that energetic-ion-driven instabilities can, first, channel the energy of the energetic ions outside the region where these ions are located and, second, considerably affect the electron heat flux across the magnetic field. A new mechanism of frequency chirping is revealed, namely it is shown that instabilities caused by the energetic ions can influence the plasma rotation, in which case the development of instabilities results in a variation of the Doppler shift in time. It is concluded that a key factor responsible for the mentioned phenomena is the local imbalance of the wave emission by energetic ions and the wave absorption by electrons along the radius. On the basis of the developed theory, experiments on the stellarator Wendelstein 7-AS and the spherical torus NSTX, where the effects of Alfvénic activity on the plasma temperature were observed, are considered.

日本語訳

そこから、高エネルギーイオン駆動不安定性が、第一に、高エネルギーイオンのエネルギーをこれらのイオンが存在する領域の外へ運び、第二に、磁場を横切る電子熱流束にかなりの影響を与えることができる、ということが導かれる理論が展開される。周波数チャーピングの新しいメカニズムが明らかにされる。すなわち、高エネルギーイオンによって引き起こされる不安定性がプラズマ回転に影響を与え得ることが示され、その場合、不安定性の発生は時間的なドップラーシフトの変化をもたらす。前述の現象の原因となる重要な因子は、半径方向における高エネルギーイオンによる波動放出と電子による波動吸収の局所的な不均衡であると結論づけられる。展開された理論に基づき、アルフヴェン活動がプラズマ温度に及ぼす効果が観測されたステラレータ Wendelstein 7-AS と球状トーラス NSTX における実験が考察される。

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nstx-u中精度(概要文一致)

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Plasma heating
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