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TRANSITION FROM KINETIC TO MHD BEHAVIOR IN A COLLISIONLESS PLASMA

机译:无碰撞等离子体中从动力学到MHD行为的转变

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The study of kinetic effects in heliospheric plasmas requires representation of dynamics at sub-proton scales, but in most cases the system is driven by magnetohydrodynamic (MHD) activity at larger scales. The latter requirement challenges available computational resources, which raises the question of how large such a system must be to exhibit MHD traits at large scales while kinetic behavior is accurately represented at small scales. Here we study this implied transition from kinetic to MHD-like behavior using particle-in-cell (PIC) simulations, initialized using an Orszag–Tang Vortex. The PIC code treats protons, as well as electrons, kinetically, and we address the question of interest by examining several different indicators of MHD-like behavior.
机译:对日球等离子动力学效应的研究要求以亚质子尺度表示动力学,但是在大多数情况下,该系统是由更大尺度的磁流体动力学(MHD)活动驱动的。后者的要求挑战了可用的计算资源,这提出了这样的问题:要在大范围内精确显示动力学行为的同时,要大比例显示MHD特征,该系统必须有多大。在这里,我们通过使用Orszag–Tang涡旋初始化的单元中粒子(PIC)模拟研究了这种从动力学到MHD行为的隐含过渡。 PIC代码可以动态地处理质子和电子,我们通过研究MHD行为的几种不同指标来解决感兴趣的问题。

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