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Diamagnetic drift stabilized ballooning modes in a 3D heliotron

D Barmaz, W A Cooper, B F McMillan, R L Dewar2012年Plasma Physics and Controlled FusionIF 2.2出版社

An analysis of kinetic ballooning modes is presented, ray trajectories for the inward shifted Large Helical Device configuration at modest ⟨β⟩ and with an anisotropic pressure profile due to the hot particles are evaluated and an estimate of the marginal stability is computed using the Weyl formula. The Weyl formula indicates that the finite diamagnetic drifts of the hot particles displaces the minimum phase space volume to lower frequencies; however, its magnitude is higher than when these drift effects are ignored.

日本語訳

運動論的バルーニングモードの解析を提示し、内向きシフトした大型ヘリカル装置配位における平均ベータ値⟨β⟩が控えめで、かつ高温粒子による異方性圧力分布を有する場合のray軌跡を評価し、Weyl公式を用いて臨界安定性の推定を計算する。Weyl公式は、高温粒子の有限な反磁性ドリフトが位相空間体積の最小値をより低い周波数へ移動させることを示すが、その大きさはこれらのドリフト効果を無視した場合よりも大きい。

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lhd中精度(概要文一致)

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Ballooning modeHeliotron
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