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Collisionless distribution functions for force-free current sheets: using a pressure transformation to lower the plasma beta

机译:无粘的电流纸张的碰撞分配功能:使用压力变换降低等离子体β

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So far, only one distribution function giving rise to a collisionless nonlinear force-free current sheet equilibrium allowing for a plasma beta less than one is known (Allanson et al., Phys. Plasmas, vol. 22 (10), 2015, 102116; Allanson et al., J. Plasma Phys., vol. 82 (3), 2016a, 905820306). This distribution function can only be expressed as an infinite series of Hermite functions with very slow convergence and this makes its practical use cumbersome. It is the purpose of this paper to present a general method that allows us to find distribution functions consisting of a finite number of terms (therefore easier to use in practice), but which still allow for current sheet equilibria that can, in principle, have an arbitrarily low plasma beta. The method involves using known solutions and transforming them into new solutions using transformations based on taking integer powers (N) of one component of the pressure tensor. The plasma beta of the current sheet corresponding to the transformed distribution functions can then, in principle, have values as low as 1/N. We present the general form of the distribution functions for arbitrary N and then, as a specific example, discuss the case for N = 2 in detail.
机译:到目前为止,已知只有一个分布函数产生允许血浆的无线非线性的无线动力板平衡,允许血浆β少于一个,allanson等,phys。prasmas,vol。22(10),2015,102116; Allanson等人,J.等离子物理。,Vol.82(3),2016A,905820306)。该分发功能只能表示为无限系列的Hermite函数,收敛非常缓慢,这使其实际使用繁琐。本文的目的是介绍一种允许我们找到由有限术语组成的分发功能的一般方法(因此更容易在实践中使用),但这仍然允许当前的表格均衡,原则上可以是可以原则上的任意低等离子体β。该方法涉及使用已知解决方案并使用基于压力张量的一个分量的整数功率(n)的变换将它们转换为新的解决方案。然后,原则上可以具有低至1 / N的值的电流纸的等离子体β。我们介绍了任意n的分布函数的一般形式,然后作为具体示例,详细讨论n = 2的情况。

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