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Small Scale Processes and Macroscopic Effects in Collisionless Plasmas

机译:无碰撞等离子体的小规模过程和宏观效应

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In high temperature space and laboratory plasmas, energy, initially injected at large scales, is transferred towards small scales. In a number of cases these plasmas can be considered as almost collisionless and dissipative effects become important at length scales much smaller than those where kinetic effects come into play. Here we discuss the role of microscopic small scale kinetic effects and their possible feedback on the large scale dynamics by considering two problems that exhibit interesting analogies: the nonlinear Landau damping of an electrostaitic wave and the nonlinear evolution of collisionless magnetic reconnection.
机译:在高温空间和实验室等离子体中,最初以大比例注入的能量会向小比例转移。在许多情况下,这些等离子体几乎可以认为是无碰撞的,并且耗散效应在长度尺度上变得比在动力学效应起作用的尺度小得多。在这里,我们通过考虑表现出有趣的类比的两个问题来讨论微观小尺度动力学效应的作用及其对大尺度动力学的可能反馈:一个电波的非线性Landau阻尼和无碰撞磁重联的非线性演化。

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