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首页> 外文期刊>The Astrophysical Journal. Letters >Cosmic Rays in Intermittent Magnetic Fields
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Cosmic Rays in Intermittent Magnetic Fields

机译:在间歇磁场中的宇宙射线

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摘要

The propagation of cosmic rays in turbulent magnetic fields is a diffusive process driven by the scattering of the charged particles by random magnetic fluctuations. Such fields are usually highly intermittent, consisting of intense magnetic filaments and ribbons surrounded by weaker, unstructured fluctuations. Studies of cosmic-ray propagation have largely overlooked intermittency, instead adopting Gaussian random magnetic fields. Using test particle simulations, we calculate cosmic-ray diffusivity in intermittent, dynamo-generated magnetic fields. The results are compared with those obtained from non-intermittent magnetic fields having identical power spectra. The presence of magnetic intermittency significantly enhances cosmic-ray diffusion over a wide range of particle energies. We demonstrate that the results can be interpreted in terms of a correlated random walk.
机译:宇宙射线在湍流磁场中的传播是由随机磁波动的带电粒子的散射驱动的漫射过程。 这些领域通常是高度间歇性的,由强烈的磁丝和被较弱,非结构化波动包围的丝带组成。 宇宙射线繁殖的研究基本上忽略了间歇性,而是采用高斯随机磁场。 使用测试粒子模拟,我们计算间歇式发电机产生的磁场中的宇宙射线扩散率。 将结果与从具有相同功率谱的非间歇磁场获得的结果进行比较。 磁间间歇性的存在显着增强了各种颗粒能量上的宇宙射线扩散。 我们证明了结果可以在相关的随机行走方面解释。

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