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Theory and simulation of lower-hybrid drift instability for current sheet with guide field

机译:有向导场的电流表下混合漂移不稳定性的理论与模拟

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摘要

The stability of a thin current sheet with a finite guide field is investigated in the weak guide-field limit by means of linear theory and simulation. The emphasis is placed on the lower-hybrid drift instability (LHDI) propagating along the current flow direction. Linear theory is compared against the two-dimensional linear simulation based on the gyrokinetic electron/fully kinetic ion code. LHDI is a flute mode characterized by k center dot B-total=0; hence, it is stabilized by a finite guide field if one is confined to k vector strictly parallel to the cross-field current. Comparison of the theory and simulation shows qualitatively good agreement.
机译:利用线性理论和仿真方法研究了在有限的引导场极限下具有有限引导场的薄电流板的稳定性。重点放在沿电流流动方向传播的下混合漂移不稳定性(LHDI)。将线性理论与基于回旋运动电子/完全运动离子代码的二维线性模拟进行了比较。 LHDI是一种长笛模式,其特征是k个中心点B-total = 0;因此,如果将其限制在严格平行于交叉场电流的k个矢量上,则可以通过有限的引导场来使其稳定。理论和仿真的比较显示出定性良好的一致性。

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