论文标题

宇宙射线和随机磁陷阱

Cosmic rays and random magnetic traps

论文作者

Tharakkal, Devika, Snodin, Andrew P., Sarson, Graeme R., Shukurov, Anvar

论文摘要

星际培养基(ISM)中宇宙射线(CR)颗粒的空间分布在射电天文学中至关重要,在射电天文学中,其知识对于观察结果的解释至关重要,在理论天体物理学中,CR有助于ISM的结构和动力学。星际磁场强度和结构中的局部不均匀性会影响宇宙射线颗粒的局部扩散性和整体动力学。磁陷阱(位于同一磁线上的磁性镜之间的区域)可能会导致CR空间分布中特别强和持续的特征。使用测试粒子模拟,我们研究了各种磁场构型中Cr颗粒(质子和电子)集合的空间分布,从理想化的轴对称陷阱到间歇性(动力学生成)随机磁场中出现的磁场的空间分布。我们证明,CR源中的不均匀性和Cr颗粒的能量损失都可以导致CR分布中的局部局部不均匀性,并且质子和电子具有不同的空间分布。我们的结果可能对从天文对象及其随机波动的同步子发射的解释产生深远的影响。

The spatial distribution of cosmic ray (CR) particles in the interstellar medium (ISM) is of major importance in radio astronomy, where its knowledge is essential for the interpretation of observations, and in theoretical astrophysics, where CR contribute to the structure and dynamics of the ISM. Local inhomogeneities in interstellar magnetic field strength and structure can affect the local diffusivity and ensemble dynamics of the cosmic ray particles. Magnetic traps (regions between magnetic mirrors located on the same magnetic line) can lead to especially strong and persistent features in the CR spatial distribution. Using test particle simulations, we study the spatial distribution of an ensemble of CR particles (both protons and electrons) in various magnetic field configurations, from an idealized axisymmetric trap to those that emerge in intermittent (dynamo-generated) random magnetic fields. We demonstrate that both the inhomogeneity in the CR sources and the energy losses by the CR particles can lead to persistent local inhomogeneities in the CR distribution and that the protons and electrons have different spatial distributions. Our results can have profound implications for the interpretation of the synchrotron emission from astronomical objects, and in particular its random fluctuations.

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