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Wall stabilization of the rigid ballooning m = 1 mode in a long-thin mirror trap

Igor Kotelnikov, Qiusun Zeng, Vadim Prikhodko, Dmitri Yakovlev, Keqing Zhang, Zhibin Chen, Jie Yu2022年被引用 4Nuclear FusionIF 3出版社

The prospect of stabilization of the m = 1 'rigid' ballooning mode in an open axially symmetric long-thin trap with the help of a conducting lateral wall surrounding a column of isotropic plasma is studied. It was found that for effective wall stabilization, the beta parameter β must exceed some critical value βcrit. The dependence of βcrit on the mirror ratio, radial pressure profile, axial profile of the vacuum magnetic field, and the width of vacuum gap between plasma and lateral wall was studied. Minimal critical beta at the level of 70% is achieved at zero vacuum gap, although stability zone at β → 1 exists even at extremely wide vacuum gap. It is shown that when a conducting lateral wall is combined with conducting end plates simulating attachment of the end MHD stabilizers to the central cell of an open trap, there are two critical beta values and two stability zones that can merge, making stable the entire range of allowable beta values 0 < β < 1.

日本語訳

m = 1の「リジッド」バルーニングモードが、等方性プラズマの柱を取り囲む導体側壁の助けにより、開放型軸対称長細トラップにおいて安定化される可能性が研究された。効果的な壁安定化のためには、ベータパラメータβが臨界値βcritを超えなければならないことが見出された。βcritのミラー比、径方向圧力分布、真空磁場の軸方向分布、およびプラズマと側壁の間の真空ギャップ幅への依存性が研究された。約70%のレベルでの最小臨界ベータは、ゼロ真空ギャップで達成されるが、β → 1での安定領域は、極めて広い真空ギャップでも存在する。導体側壁が、開放トラップの中央セルへの端部MHDスタビライザーの接続を模擬する導体端板と組み合わされると、二つの臨界ベータ値と二つの安定領域が存在し、それらが融合して、許容ベータ値の全範囲0 < β < 1を安定にすることが示された。

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