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Impact of the non-axisymmetric SOL current driven by a biased electrode on the diverted J-TEXT plasma

Shuhao Li, Nengchao Wang, Yonghua Ding, Yunfeng Liang, Qinghu Yang, Feiyue Mao, Xin Xu, Zhengkang Ren, Chuanxu Zhao, Zhuo Huang2022年Plasma Physics and Controlled FusionIF 2.2出版社

It is observed in EAST that the non-axisymmetric helical currents induced by lower hybrid waves (LHWs) in the scrape-off layer (SOL) can produce resonant magnetic perturbations (RMPs), hence mitigate edge-localized modes (ELMs) significantly and cause the strike points splitting. In this work, the non-axisymmetric SOL current driven by an alternative method, i.e. biased electrode, is shown to influence the plasma boundary, especially the strike points, in the divertor configuration on J-TEXT. With positive bias to the electrode, the upper strike points on the divertor target plate is observed to split as captured by the visible camera. Such splitting is usually observed with the RMPs. In addition, the SOL plasma parameters measured by the reciprocating probe, such as floating potential (Vf), electron temperature (Te), and ion saturation current (Is), are significantly altered by applying modulation bias, which is closely related to the SOL current. A SOL current model has been extended from the limiter configuration version to the poloidal divertor configuration, and the magnetic field generated by SOL current and the change of magnetic topological structure of plasma boundary can be simulated. The simulation results shows that the magnetic perturbation generated by the SOL current can induce the lobes near the X-point, which is three-dimensional asymmetric structure, and shows good agreement with the experimental observation. The active control of the boundary magnetic topology indicates that the SOL current is capable of generating strong magnetic perturbations, and hence might be sufficient for the control of ELMs.

日本語訳

EASTにおいて、スクレイプオフ層(SOL)内で低域混成波(LHWs)によって誘起される非軸対称ヘリカル電流が、共鳴磁場摂動(RMPs)を生成し、それによって周辺局在モード(ELMs)を有意に緩和し、ストライク点の分裂を引き起こすことが観測されている。本研究では、代替手法、すなわちバイアス電極によって駆動される非軸対称SOL電流が、J-TEXTのダイバータ配位においてプラズマ境界、特にストライク点に影響を与えることが示されている。電極への正バイアスにより、ダイバータ標的板上の上部ストライク点が分裂することが、可視カメラによる撮像で観測された。このような分裂は通常、RMPsで観測される。さらに、往復プローブで測定されたSOLプラズマパラメータ、例えば浮遊電位(Vf)、電子温度(Te)、イオン飽和電流(Is)は、変調バイアスを印加することで有意に変化し、これはSOL電流と密接に関連している。SOL電流モデルはリミター配位版からポロイダルダイバータ配位へ拡張され、SOL電流によって生成される磁場とプラズマ境界の磁気トポロジー構造の変化をシミュレーションできる。シミュレーション結果は、SOL電流によって生成される磁場摂動がX点近傍にローブを誘起できることを示しており、これは三次元非対称構造であり、実験観測とよく一致している。境界磁気トポロジーの能動制御は、SOL電流が強い磁場摂動を生成できることを示しており、したがってELMsの制御に十分である可能性がある。

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Current driveScrape-off layerTEXTJ-TEXT
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