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Experimental studies of stability and beta limit in JET

M P Gryaznevich, T C Hender, D F Howell, C D Challis, H R Koslowski, S Gerasimov, E Joffrin, Y Q Liu, S Saarelma, JET-EFDA contributors2008年Plasma Physics and Controlled FusionIF 2.2出版社

The paper presents results on the use of resonant field amplification for experimental probing of stability and β-limits (β is the ratio of the plasma pressure to the magnetic field pressure) in JET. It is found that an externally applied helical magnetic field is strongly enhanced when the plasma exceeds the ideal no-wall stability limit or approaches proximity to other marginally stable (i.e. current-driven) modes. This effect is known as the resonant field amplification (RFA) and was used for the systematic probing of stability in different advanced regimes on JET. The application of this technique on JET is discussed in the paper and the results of the RFA measurements are presented and related to the observed limitations in β.

日本語訳

本論文は、JETにおけるプラズマ圧力と磁場圧力の比であるβの安定性および限界を実験的に探査するための共鳴磁場増幅の利用に関する結果を示すものである。外部から印加された共鳴磁場は、プラズマが無壁安定性限界を超えた場合、または他の限界安定モード(すなわち電流駆動モード)に近接した場合に、強く増幅されることが見出された。この効果は共鳴磁場増幅(RFA)として知られており、JETにおける異なる先進運転シナリオでの安定性の系統的な探査に使用された。本論文では、この手法のJETへの適用について議論し、RFA測定の結果を提示して、観測されたβ限界との関連について述べる。

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