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Wave mixing and instabilities in cosmic-ray-modified shocks and flows

机译:宇宙射线修正的冲击和流动中的波混合和不稳定性

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摘要

Wave mixing equations describing the interaction of short-wavelength sound waves and entropy waves in two-fluid cosmic ray hydrodynamics in a non-uniform, large-scale, background flow in one Cartesian space dimension are investigated. The wave interaction coefficients depend on large-scale gradients in the background flow, and consist of two physically distinct components. The first component consists of wave-damping terms due to the diffusing cosmic rays, plus squeezing instability terms associated with the large-scale cosmic ray pressure gradient. These effects were first investigated by Drury and Dorfi in a study of the propagation of short-wavelength WKB sound waves in cosmic-ray-modified flows and shocks. The second component describes gas dynamical wave mixing effects due to gradients of the gas entropy S and the gas dynamical Riemann invariants (R~(±)) of the background flow. A Green function solution is used to illustrate the coupling of the backward and forward sound waves for the case of a uniform background flow, in which the coupling coefficients depend on the parameter α = a_c~(2/2)κ, where a_c is the cosmic-ray `sound speed' and κ is the hydrodynamical cosmic-ray diffusion coefficient. Analytical WKB approximation methods and numerical simulations are used to investigate the modifications of the cosmic ray squeezing instability by wave mixing in cosmic-ray-modified shocks and pressure balance structures. Astrophysical applications to instabilities in supernova remnant shocks are discussed.
机译:研究了在一个笛卡尔空间维中非均匀,大规模,背景流动中描述双流体宇宙射线流体动力学中短波声波和熵波相互作用的波动混合方程。波的相互作用系数取决于背景流中的大规模梯度,并且由两个物理上不同的成分组成。第一部分由宇宙射线的扩散引起的波衰减项,以及与大规模宇宙射线压力梯度有关的挤压不稳定性项组成。这些效应最初是由Drury和Dorfi在研究短波WKB声波在宇宙射线修饰的流和冲击中的传播研究中进行研究的。第二部分描述了由于气体熵S和背景流的气体动力学黎曼不变量(R〜(±))的梯度而引起的气体动力学波混合效应。格林函数解用于说明在均匀背景流情况下前后声波的耦合,其中耦合系数取决于参数α= a_c〜(2/2)κ,其中a_c是宇宙射线的“声速”,κ是流体力学的宇宙射线扩散系数。 WKB分析近似方法和数值模拟用于研究在宇宙射线修改过的冲击和压力平衡结构中通过混波对宇宙射线压缩不稳定性的修改。讨论了天文学在超新星遗留下来的不稳定性中的应用。

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