论文标题

关于宇宙射线和超新星驱动的湍流的综合作用

On the Combined Role of Cosmic Rays and Supernova-Driven Turbulence for Galactic Dynamos

论文作者

Bendre, Abhijit B., Elstner, Detlef, Gressel, Oliver

论文摘要

在附近星系中观察到的大规模相干磁场被认为源于平均场发电机。这是通过湍流电动力(EMF,$ \叠加{\ Mathcal {e}} $)由由超新星(SN)爆炸在差异旋转的星际介质(ISM)中产生的螺旋湍流产生的。在本文中,我们旨在研究由于通过SN爆炸注入的宇宙射线(CR)成分而引起的浮力作用的可能性。我们通过分析ISM局部剪切盒的磁性水力动力学模拟来做到这一点,其中湍流是通过随机SN爆炸驱动的,爆炸的能量分布在CR和/或热能组件中。我们使用对齐扩散处方的磁场进行CR的传播。我们将模型中与CR组件的磁场的演变与不涉及CR的模型进行比较。我们证明,CR组件的包含略微增强了发电机的生长。我们使用测试场方法进一步计算了基础的发电机系数,并认为大规模平均磁场的整个演变可以使用$α-ω$ dynamo模型再现。我们还表明,包含CR组件会导致磁场成分之间的不平衡湍流泵送和通过Rädler效应的其他发电机作用。

Large-scale coherent magnetic fields observed in the nearby galaxies are thought to originate by a mean-field dynamo. This is governed via the turbulent electromotive force (EMF, $\overline{\mathcal{E}} $) generated by the helical turbulence driven by supernova (SN) explosions in the differentially rotating interstellar medium (ISM). In this paper we aim to investigate the possibility of dynamo action by the virtue of buoyancy due to a cosmic ray (CR) component injected through the SN explosions. We do this by analysing the magnetohydrodynamic simulations of local shearing box of ISM, in which the turbulence is driven via random SN explosions and the energy of the explosion is distributed in the CR and/or thermal energy components. We use the magnetic field aligned diffusion prescription for the propagation of CR. We compare the evolution of magnetic fields in the models with the CR component to our previous models that did not involve the CR. We demonstrate that the inclusion of CR component enhances the growth of dynamo slightly. We further compute the underlying dynamo coefficients using the test-fields method, and argue that the entire evolution of the large scale mean magnetic field can be reproduced with an $α-Ω$ dynamo model. We also show that the inclusion of CR component leads to an unbalanced turbulent pumping between magnetic field components and additional dynamo action by the Rädler effect.

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