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JIPP T-IIU托卡马克等离子体中带状流谱的变化。

Change of zonal flow spectra in the JIPP T-IIU tokamak plasmas.

作者信息

Hamada Y, Watari T, Yamagishi O, Nishizawa A, Narihara K, Kawasumi Y, Ido T, Kojima M, Toi K

机构信息

National Institute for Fusion Science, Toki, 509-5292, Japan.

出版信息

Phys Rev Lett. 2007 Aug 10;99(6):065005. doi: 10.1103/PhysRevLett.99.065005.

Abstract

When Ohmically heated low-density plasmas are additionally heated by higher-harmonics ion-cyclotron-range-of frequency heating, heated by neutral beam injection, or strongly gas puffed, the intensity of zonal flows in the geodesic acoustic mode frequency range in the tokamak core plasma decreases sharply and that of low-frequency zonal flow grows drastically. This is accompanied by a damping of the drift wave propagating in the electron diamagnetic drift direction, turbulence by trapped electron mode (TEM), and the increase of the mode propagating to ion diamagnetic drift direction (ITG). In the half-radius region, TEM and high-frequency zonal flows remain intense in both OH and heated phases. ITG and low-frequency zonal flows grow in heated plasmas, suggesting a strong coupling between ITG and low-frequency zonal flow.

摘要

当欧姆加热的低密度等离子体通过高次谐波离子回旋频率范围加热、中性束注入加热或强烈气体吹入而额外加热时,托卡马克核心等离子体中在测地声模频率范围内的带状流强度急剧下降,而低频带状流强度急剧增加。这伴随着在电子抗磁漂移方向传播的漂移波的阻尼、捕获电子模(TEM)引起的湍流以及向离子抗磁漂移方向传播的模(ITG)的增加。在半半径区域,TEM和高频带状流在欧姆加热阶段和加热阶段都保持强烈。ITG和低频带状流在加热等离子体中增长,表明ITG和低频带状流之间存在强耦合。

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