Force balance in current sheets in collisionless plasma

O. Mingalev, P. Setsko, M. Melnik, I. Mingalev, H. Malova, A. Merzlyi
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引用次数: 1

Abstract

In this paper, we derive a divergent form of the force balance equation for collisionless plasma in the quasineutrality approximation, in which the electric field and current density are excluded. For a stationary spatially one-dimensional current sheet with a constant normal component of the magnetic field and magnetized electrons, the general form of the force balance equation has been obtained for the first time in the form of a conservation law. An equation in this form is necessary for the correct formulation of boundary conditions when modeling asymmetric current sheets, as well as for the control of the stationarity of the numerical solution obtained in the model. Furthermore, the fulfillment of this equation is considered for two types of stationary configurations of a thin current sheet, which are obtained using a numerical model. The derived equation makes it possible to develop models of asymmetric current sheets, in particular current sheets on the magnetopause flanks in the magnetotail.
无碰撞等离子体中电流表的力平衡
本文导出了准中性近似下无碰撞等离子体力平衡方程的发散形式,其中电场和电流密度被排除在外。对于具有恒定磁场法向分量和磁化电子的一维静态电流片,首次以守恒定律的形式得到了力平衡方程的一般形式。这种形式的方程对于在模拟非对称电流片时正确地表述边界条件以及控制模型中得到的数值解的平稳性是必要的。此外,本文还考虑了用数值模型得到的两种固定型薄电流片构型的满足性。推导出的方程使得建立不对称电流片的模型成为可能,特别是磁尾磁层顶两侧的电流片。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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