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The Velikhov and Anti-Velikhov Effects in the Theory of Magnetorotational Instability

机译:磁旋转不稳定性理论中的维利霍夫效应和反维利霍夫效应

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A theory of magnetorotational instability (MRI) allowing an equilibrium plasma pressure gradient and nonaxisymmetry of perturbations is developed. This approach reveals that in addition to the Velikhov effect driving the MRI due to negative rotation frequency profile, d ohm(2)/dr < 0, there is an opposite effect (the anti-Velikhov effect) weakening this driving (here, ohm is the rotation frequency and r is the radial coordinate). It is shown that in addition to the Velikhov mechanism, two new mechanisms of MRI driving are possible, one of which is due to the pressure gradient squared and the other is due to the product of the pressure and density gradients. The analysis includes both the one-fluid magnetohydrodynamic plasma model and the kinetics allowing. collisionless effects. In addition to the pure plasma containing ions and electrons, the dusty plasma is considered. The charged dust effect on stability is analyzed using the approximation of immobile dust. In the presence of dust, a term with the electric field appears in the one-fluid equation of plasma motion. This electric field affects the equilibrium plasma rotation and also gives rise to a family of instabilities of the rotating plasma, called the dust-induced rotational instabilities.
机译:建立了磁平衡不稳定性(MRI)理论,该理论允许平衡的血浆压力梯度和非轴对称的扰动。这种方法表明,除了由于负旋转频率曲线驱动MRI的Velikhov效应d ohm(2)/ dr <0外,还有相反的效应(反Velikhov效应)削弱了这种驱动(此处的ohm为旋转频率,r为径向坐标)。结果表明,除了Velikhov机构外,还有两种新的MRI驱动机制,一种是由于压力梯度平方而另一种是由于压力梯度与密度梯度的乘积。分析既包括单流体磁流体动力学等离子体模型,也包括动力学允许的模型。无碰撞效果。除了包含离子和电子的纯等离子体之外,还考虑了尘土等离子体。带电灰尘对稳定性的影响使用固定灰尘的近似值进行分析。在存在粉尘的情况下,等离子体运动的单流体方程中会出现电场项。该电场影响平衡等离子体的旋转,并且还引起旋转等离子体的一族不稳定性,称为粉尘引起的旋转不稳定性。

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