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The Influence of Guiding Field on Low-frequency Electromagnetic Instabilities in Collisionless Current Sheets

机译:导流场对无碰撞电流板中低频电磁不稳定性的影响

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This work investigates the effect of guiding field on low-frequency electromagnetic instabilities in collisionless current sheets using the dispersion relation obtained in the collisionless and compressible magnetohydrodynamic model. The results in the following three cases show that the guiding field can strongly affect the 3-dimensional propagating disturbed waves. (1) On the middle plane of the current sheet (z = 0), if there is no guiding field, then no instability is observed. But if there a guiding field, then instability can take place. (2) Near the middle plane of the current sheet (z = 0.2), the current sheet becomes unstable. With increasing the intensity of the guiding field, the instability grows obviously. The wave mode may be whistler or low-hybrid wave. (3) Near the edge of the current sheet (z = 0.8), the guiding field exhibits no evident effect and the unstable wave mode is a quasi-parallel whistler wave.
机译:这项工作使用在无碰撞和可压缩的磁流体动力学模型中获得的色散关系,研究了引导场对无碰撞电流板中低频电磁不稳定性的影响。以下三种情况的结果表明,引导场可以强烈影响3维传播的扰动波。 (1)在当前图纸的中间平面(z = 0)上,如果没有引导场,则不会观察到不稳定。但是,如果有一个指导领域,那么就会发生不稳定。 (2)在当前图纸的中间平面附近(z = 0.2),当前图纸变得不稳定。随着引导场强度的增加,不稳定性明显增加。波动模式可以是吹口哨或低杂波。 (3)在当前工作表的边缘附近(z = 0.8),引导场没有表现出明显的效果,并且不稳定波模式是准平行的惠斯勒波。

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