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首页> 外文期刊>Physics of plasmas >Structure of intermediate shocks in collisionless anisotropic Hall-magnetohydrodynamics plasma models
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Structure of intermediate shocks in collisionless anisotropic Hall-magnetohydrodynamics plasma models

机译:无碰撞各向异性霍尔磁流体力学等离子体模型中的中间激波结构

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摘要

The existence of discontinuities within the double-adiabatic Hall-magnetohydrodynamics (MHD) model is discussed. These solutions are transitional layers where some of the plasma properties change from one equilibrium state to another. Under the assumption of traveling wave solutions with velocity C and propagation angle θ with respect to the ambient magnetic field, the Hall-MHD model reduces to a dynamical system and the waves are heteroclinic orbits joining two different fixed points. The analysis of the fixed points rules out the existence of rotational discontinuities. Simple considerations about the Hamiltonian nature of the system show that, unlike dissipative models, the intermediate shock waves are organized in branches in parameter space, i.e., they occur if a given relationship between θ and C is satisfied. Electron-polarized (ion-polarized) shock waves exhibit, in addition to a reversal of the magnetic field component tangential to the shock front, a maximum (minimum) of the magnetic field amplitude. The jumps of the magnetic field and the relative specific volume between the downstream and the upstream states as a function of the plasma properties are presented. The organization in parameter space of localized structures including in the model the influence of finite Larmor radius is discussed.
机译:讨论了双绝热霍尔磁流体力学(MHD)模型中的不连续性。这些解决方案是过渡层,其中一些等离子体特性从一种平衡状态变为另一种平衡状态。在具有相对于环境磁场的速度C和传播角θ的行波解的假设下,霍尔-MHD模型简化为动力学系统,并且波是连接两个不同固定点的异斜轨道。对定点的分析排除了旋转不连续的存在。关于系统哈密顿量性质的简单考虑表明,与耗散模型不同,中间冲击波组织在参数空间的分支中,即,如果满足θ和C之间的给定关系,则它们会发生。电子极化(离子极化)的冲击波除了与冲击前沿相切的磁场分量反转外,还表现出最大(最小)的磁场振幅。呈现了磁场的跳跃以及下游和上游状态之间的相对比体积随等离子体性质的变化。讨论了局部结构参数空间中的组织,包括模型中有限拉莫尔半径的影响。

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