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Thermomagnetic and magnetorotational instabilities of thin Keplerian discs in poloidal magnetic fields

机译:极化磁场中薄开普勒圆盘的热磁和磁旋转不稳定性

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摘要

Stability of thin hot Keplerian discs is investigated asymptotically in small disc's aspect ratio, ε. The study is carried out in the local approximation for short vertical waves in the disc-thickness scale. Besides the radial rotation shear and the vertical magnetic field, the background configuration is characterized by a vertically near-constant temperature profile with a small vertical gradient. The temperature-gradient term in Ohm's law, which characterizes the thermomagnetic transport is found to be of the order of ε. The effect of the thermomagnetic transport slightly modifies the conventional magnetorotational instability (MRI), while a new thermomagnetic instability (TMI) emerges in regions of the wavenumber space where MRI is absent. Explicit solutions are obtained for a wide range of values of plasma beta, β, and thermomagnetic transport coefficient, λ. In particular, it is shown for λ ? 1 that the MRI dominates in weak magnetic fields, β ? 1, while the TMI is exhibited in strong magnetic fields, β ~ 1, also with the growth rate of the order of inverse rotation period (? 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)
机译:渐近地研究了薄热Keplerian椎间盘的稳定性,其小长径比为ε。这项研究是对圆盘厚度尺度的短垂直波进行局部近似计算的。除了径向旋转剪切力和垂直磁场外,背景配置还具有垂直近恒定的温度分布和较小的垂直梯度的特征。发现欧姆定律中表征热磁传输的温度梯度项约为ε。热磁传输的影响稍微改变了常规的磁磁不稳定性(MRI),而在波数空间中不存在MRI的区域出现了新的热磁不稳定性(TMI)。对于广泛的血浆β(β)值和热磁传输系数λ,可以获得显式解。特别地,它表示为λ≥。由图1可知,MRI在弱磁场中占主导地位。如图1所示,虽然TMI在强磁场中表现为β〜1,但也具有逆旋转周期数量级的增长率(?2011 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim)

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