宇宙射线和超新星驱动的湍流对星系发电机的综合作用

Abhijit Bhausaheb Bendre, D. Elstner, O. Gressel
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引用次数: 1

摘要

在邻近星系中观测到的大规模相干磁场被认为是由平均场发电机产生的。这是由在差旋转星际介质(ISM)中由超新星(SN)爆炸驱动的螺旋湍流产生的湍流电动势(EMF, $\overline{\mathcal{E}} $)控制的。在本文中,我们旨在研究宇宙射线(CR)成分通过SN爆炸注入的浮力而产生发电机作用的可能性。我们通过分析ISM局部剪切箱的磁流体动力学模拟来实现这一点,其中湍流是通过随机SN爆炸驱动的,爆炸的能量分布在CR和/或热能分量中。我们采用磁场排列扩散公式对CR的传播进行了分析,并将模型中有CR分量的磁场演化与不含CR分量的模型进行了比较,结果表明,CR分量的加入对发电机的生长有轻微的促进作用。我们进一步使用测试场方法计算了潜在的发电机系数,并认为$\alpha-\Omega$发电机模型可以再现大尺度平均磁场的整个演变。我们还表明,CR分量的加入导致磁场分量之间的不平衡湍流泵送和额外的拉德勒效应的发电机作用。
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On the combined role of cosmic rays and supernova-driven turbulence for galactic dynamos
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 $\alpha-\Omega$ 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 Radler effect.
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