非线性朗道阻尼对宇宙射线传输的作用

Benedikt Schroer, Damiano Caprioli, Pasquale Blasi
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引用次数: 0

摘要

我们利用混合 PIC 模拟,首次评估了非线性朗道阻尼在高贝塔等离子体自发散射过程中的作用,这些条件适合于银河系光晕中的 CR 散射。这种阻尼过程表现为背景等离子体的加热和CRs漂移速度的降低,但仍然是超阿尔芬的。我们还表明,阻尼导致了一个逆级联过程,包括产生非共振大尺度模式,这是一个具有许多潜在现象学意义的新结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The role of non-linear Landau damping for cosmic-ray transport
We present the first assessment, using hybrid PIC simulations, of the role of non-linear Landau damping in the process of self-generated scattering in a high $\beta$ plasma, conditions appropriate for CR scattering in the halo of the Galaxy. This damping process manifests itself in the form of heating of the background plasma and reduction of the drift speed of CRs that yet remains super-Alfvenic. We also show that the damping leads to an inverse cascade process, consisting of producing non-resonant large scale modes, a novel result with many potential phenomenological implications.
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