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Experimental investigation of electromagnetic GAMs under the influence of 3D magnetic topological structure in EAST

H Qu, D F Kong, M Xu, A D Liu, Y F Liang, S B Zhang, H S Cai, Z Y Qiu, W Chen, T H Shi2022年Plasma Physics and Controlled FusionIF 2.2出版社

The relationship between geodesic acoustic modes (GAMs) and tearing modes (TMs), or locked modes (LMs), have been investigated in EAST. Firstly, multi-branch electromagnetic GAMs are observed synchronously after the excitation of TMs. Broadened radial coverage is observed for these branches, and these frequencies can be described by the dispersion relation of GAM. Secondly, multi-branch electromagnetic GAMs are generated after the excitation of LMs. The toroidal asymmetric structure of GAMs is excited due to the existence of 3D intrinsic error fields, and the radial distribution of those branches is altered accordingly. Four branches of electromagnetic GAMs are observed in the region that is closer to the 'X'-point of the locked magnetic islands, which should be merged into two branches for the region that is closer to the 'O'-point, as confirmed by XUV array measurement. Thirdly, a similar phenomenon is reproduced by the modulation of resonant magnetic perturbation (RMP). The frequency of GAM increases with the current of the RMP coils, and multi-branches of similar modes are generated when the current achieves kA, where the electrostatic and electromagnetic components are altered accordingly. The features of those branches are modulated by the rotation of the RMP. Therefore, the structures of the pair of GAMs can be different, which should be influenced by the different magnetic topological structure.

日本語訳

測地音響モード(GAM)とテアリングモード(TM)、あるいはロックモード(LM)の関係がEASTにおいて調査された。第一に、TMの励起後に、複数分岐の電磁GAMが同期して観測された。これらの分岐については、動径方向の広がりが広くなっていることが観測され、その周波数はGAMの分散関係によって記述できる。第二に、複数分岐の電磁GAMがLMの励起後に生成される。GAMのトロイダル非対称構造は、3次元の内部誤差磁場の存在によって励起され、それらの分岐の動径分布はそれに応じて変化する。4つの分岐の電磁GAMが、ロックされた磁気島のX点により近い領域で観測され、これはO点により近い領域では2つの分岐に統合されるはずであり、XUVアレイ計測によって確認された。第三に、共鳴磁気摂動(RMP)の変調によって同様の現象が再現された。GAMの周波数はRMPコイルの電流とともに増加し、電流がkAに達すると同様のモードの複数分岐が生成され、それに伴って静電成分と電磁成分が変化する。それらの分岐の特徴はRMPの回転によって変調される。したがって、GAMの対の構造は異なり得るが、これは異なる磁気位相構造の影響を受けるはずである。

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