论文标题

不均匀等离子体流动的消防软管不稳定

Fire-hose instability of inhomogeneous plasma flows with heat fluxes

论文作者

Uchava, E. S., Tevzadze, A. G., Shergelashvili, B. M., Dzhalilov, N. S., Poedts, S.

论文摘要

我们研究热流和速度剪切对弱碰撞等离子体流动的平行消防不稳定性的影响。为此,我们采用各向异性16天矩MHD流体闭合模型,该模型考虑了压力和温度各向异性以及各向异性热通量的效果。消防模式的线性稳定性分析以不可压缩的极限进行,其中MHD流量平行于背景磁场,而速度则以横向向流动方向进行剪切。速度剪切参数的增加似乎会导致消防不稳定的增长率更高。对于与倾斜波数$ k _ {\ perp}/k _ {\ Parallel} <1 $的扰动,不稳定性增长率的增加最为深刻。热通量参数引入了剪切平面中不稳定性生长的不对称性:与速度剪切方向的波形扰动相比,与在相反方向相反的方向相比,速度剪切方向的扰动变得明显更强。我们讨论了介绍的研究对太阳风的可观察特征的含义,以及根据消防不稳定性设定的稳定性约束,对太阳风的局部参数进行了测量。

We study the effects of heat flows and velocity shear on the parallel firehose instability in weakly collisional plasma flow. For this purpose we apply an anisotropic 16-moments MHD fluid closure model that takes into account the pressure and temperature anisotropy, as well as the effect of anisotropic heat flux. The linear stability analysis of the firehose modes is carried out in the incompressible limit, where the MHD flow is parallel to the background magnetic field, while the velocity is sheared in the direction transverse to the flow direction. It seems that an increase of the velocity shear parameter leads to higher growth rates of the firehose instability. The increase of the instability growth rate is most profound for perturbations with oblique wave-numbers $k_{\perp}/k_{\parallel} < 1$. The heat flux parameter introduces an asymmetry of the instability growth in the shear plane: perturbations with wave-vectors with a component in the direction of the velocity shear grow significantly stronger as compared to those with components in the opposite direction. We discuss the implications of the presented study on the observable features of the solar wind and possible measurements of local parameters of the solar wind based on the stability constraints set by the firehose instability.

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