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首页> 外文期刊>Journal of Plasma Physics >Magnetogravitational instability of a rotating anisotropic plasma with finite-ion-Larmor-radius corrections and generalized polytropic laws
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Magnetogravitational instability of a rotating anisotropic plasma with finite-ion-Larmor-radius corrections and generalized polytropic laws

机译:具有有限离子拉莫尔半径校正和广义多方定律的旋转各向异性等离子体的磁引力不稳定性

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The gravitational instability of an infinite homogeneous, finitely conducting, rotating, collisionless, anisotropic-pressure plasma in the presence of a uniform magnetic field with finite-ion-Larmor-radius (FLR) corrections and generalized polytropic laws is investigated. The polytropic laws are considered for the pressure components in directions parallel and perpendicular to the magnetic field. The method of normal-mode analysis is applied to derive the dispersion relation. Wave propagation is considered for both parallel and perpendicular axes of rotation. Longitudinal and transverse modes of propagation are discussed separately. The effects of rotation, finite electrical resistivity, FLR corrections and polytropic indices on the gravitational, firehose and mirror instabilities are discussed. The stability of the system is discussed by applying the Routh-Hurwitz criterion. Extensive numerical treatment of the dispersion relation leads to several interesting results. For the transverse mode of propagation with the axis of rotation parallel to the magnetic field, it is observed that rotation stabilizes the system by decreasing the critical Jeans wavenumber. It is also seen that the region of instability and the value of the critical Jeans wavenumber are larger for the Chew-Goldberger-Low (CGL) set of equations in comparison with the magnetohydrodynamic (MHD) set of equations. It is found that the effect of FLR corrections is significant only in the low-wavelength range, and produces a stabilizing influence. For the transverse mode of propagation with the axis of rotation parallel to the magnetic field, the finite electrical resistivity removes the polytropic index v from the condition for instability. The inclusion of rotation alone or FLR corrections alone or both together does not affect the condition for mirror instability. The growth rate of the mirror instability is modified owing to uniform rotation or FLR corrections or both together. We note that the condition of mirror instability depends upon the polytropic indices. We also note that neither the mirror instability nor the firehose instability can be observed for the isotropic MHD set of equations.
机译:研究了在均匀磁场,有限离子拉莫尔半径(FLR)校正和广义多变定律的作用下,无限均匀,有限传导,旋转,无碰撞,各向异性压力等离子体的重力不稳定性。对于压力分量,在平行于和垂直于磁场的方向上考虑了多变定律。应用正态分析方法导出色散关系。对于平行和垂直旋转轴都考虑了波传播。纵向和横向传播方式分别讨论。讨论了旋转,有限电阻率,FLR校正和多变指数对重力,水管和镜面不稳定性的影响。通过应用Routh-Hurwitz准则讨论了系统的稳定性。色散关系的广泛数值处理导致了几个有趣的结果。对于旋转轴平行于磁场的横向传播模式,观察到旋转通过减小临界Jeans波数来稳定系统。还可以看到,与磁流体动力学(MHD)方程组相比,Chew-Goldberger-Low(CGL)方程组的不稳定性区域和临界Jeans波数的值更大。发现FLR校正的效果仅在低波长范围内才显着,并且产生稳定的影响。对于旋转轴平行于磁场的横向传播模式,有限的电阻率从不稳定的条件中消除了多变指数v。单独包含旋转或单独包含FLR校正,或两者都包含在内,不会影响反射镜不稳定的情况。由于均匀的旋转或FLR校正或同时进行这两者,可以修改反射镜不稳定性的增长率。我们注意到镜面不稳定性的条件取决于多变指数。我们还注意到,对于各向同性的MHD方程组,既不能观察到镜面的不稳定性,也不能观察到火喉的不稳定性。

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