MHD waves in the partially ionized plasma: from single to multi-fluid approach

Elena Khomenko, David Martínez-Gómez
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Abstract

This Chapter outlines the basic properties of waves in solar partially ionized plasmas. It provides a summary of the main sets of equations, from the single-fluid formalism, to the multi-fluid one, giving examples for purely hydrogen, and for hydrogen-helium plasmas. It then discusses the solutions for waves under the single-fluid frame: the influence of the ambipolar diffusion, diamagnetic effect, and the Hall effect on the propagation, dissipation, and mode conversion of the magnetohydrodynamic waves. The Chapter continues by outlining the wave solutions in the multi-fluid formalism: the influence of the elastic inter-particle collisions into the propagation, damping and dissipation of different magnetohydrodynamic modes. Both parts discuss linear and non-linear wave solutions, and the effects of the gravitational stratification of the solar atmosphere.
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部分电离等离子体中的 MHD 波:从单流体到多流体方法
本章概述了太阳部分电离等离子体中波的基本特性。它概述了从单流体形式到多流体形式的主要方程组,并给出了纯氢和氢氦等离子体的例子。然后讨论了单流体框架下的波解:伏极扩散、二磁效应和霍尔效应对磁流体动力学波的传播、耗散和模式转换的影响。本章继续概述了多流体形式中的波解:粒子间的弹性碰撞对不同磁流体动力学模式的传播、阻尼和耗散的影响。两部分都讨论了线性和非线性波解,以及太阳大气引力分层的影响。
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