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Drift instabilities driven by slab ion temperature gradient in suprathermal plasmas

Ran Guo2024年10月Plasma Physics and Controlled FusionIF 2.2出版社

The drift instabilities driven by the slab ion temperature gradient (ITG) in Kappa-distributed plasmas are investigated by the kinetic method. The linear dispersion relation is given in an integral representation involving only the standard plasma dispersion function. The wave frequency and growth rate are derived without the density inhomogeneity. Numerical solutions of the dispersion equation are conducted to show the different effects of the suprathermal ions and electrons. We find that the suprathermal ions can enhance the instability in large wavenumbers but suppress it in small wavenumbers. Thus, the suprathermalization of ions could be one of the factors leading to a lower limit of wavenumbers for the ITG instabilities. Besides, the numerical calculations also imply that the thermal speed ratio affects the intensities of the suprathermal effects. Finally, in the presence of density inhomogeneity, the ITG instability boundary is numerically analyzed.

日本語訳

Kappa分布したプラズマにおけるスラブイオン温度勾配(ITG)によって駆動されるドリフト不安定性を、運動論的手法により調べた。線形分散関係は、標準プラズマ分散関数のみを含む積分表示で与えられる。波動周波数と成長率は、密度不均一性なしに導出される。分散方程式の数値解を実行し、超熱的イオンと電子の異なる効果を示す。超熱的イオンは、大きな波数では不安定性を強化するが、小さな波数では抑制することが分かった。したがって、イオンの超熱化は、ITG不安定性の波数の下限をもたらす要因の一つとなり得る。さらに、数値計算は、熱速度比が超熱的効果の強度に影響することをも示唆する。最後に、密度不均一性が存在する場合のITG不安定性の境界を数値的に解析する。

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