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Access to stable, high pressure tokamak pedestals using local electron cyclotron current drive

N.C. Logan, B.C. Lyons, M. Knolker, Q. Hu, T. Cote, P. Snyder2024年被引用 1Nuclear FusionIF 3出版社

Experiments on the DIII-D tokamak demonstrate that edge localized mode (ELM) stability can be manipulated using localized electron cyclotron current drive (ECCD) in conjunction with resonant magnetic perturbations (RMPs). The injection of counter-plasma-current edge ECCD reduces the RMP amplitude required to suppress ELMs and bifurcates the pedestal into a high-confinement regime with 7 kPA pedestal pressure. This is the first time such a high confinement regime has been accessed through the bifurcation from the ballooning stability branch predicted by existing models. These observations are consistent with modeled ECCD manipulation of magnetic islands induced by the RMPs.

日本語訳

DIII-Dトカマクでの実験により、周辺局在モード(ELM)安定性は、共鳴磁場摂動(RMP)と併せた局所電子サイクロトロン電流駆動(ECCD)を用いて操作できることが実証された。プラズマ電流と逆向きの周辺ECCDの入射は、ELMを抑制するのに必要なRMP振幅を低減し、ペデスタルを7 kPAのペデスタル圧力を持つ高閉じ込め状態へと分岐させる。このような高閉じ込め状態が、既存モデルによって予測されたバルーニング安定性分岐からの分岐を通じて達成されたのは今回が初めてである。これらの観測結果は、RMPによって誘起される磁気島の、モデル化されたECCDによる操作と一致している。

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diii-d中精度(概要文一致)

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Current driveElectron cyclotron current drive
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