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Kelvin-Helmholtz instability of a plasma with anisotropic and polytropic pressure laws

机译:具有各向异性和多向压力定律的等离子体的Kelvin-Helmholtz不稳定性

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The Kelvin-Helmholtz (K-H) instability of two fluids of plasma streaming in opposite directions with the same velocity and in the presence of an external magnetic field is investigated. The usual magnetohydrodynamic equations with anisotropic pressure are considered. In the present problem, the two pressures parallel and perpendicular to the direction of the magnetic field are defined by polytropic pressure laws. The generalized pressure relations are used, and two equations of state for two pressures are assumed. The equations are linearized, and initially two different flow velocities are taken for the system. The flow is assumed to be in the direction perpendicular to the magnetic field. The problem is solved and a dispersion relation is obtained. From the dispersion relation, the K-H instability condition is obtained. It is found that the instability condition depends upon the polytropic indices of the pressure relations. The condition of instability is further obtained for MHD and Chew-Goldberger-Low systems. It is also found that the growth rate of the instability depends upon various polytropic indices.
机译:研究了两种等离子流在相反方向上以相同的速度在存在外部磁场的情况下的开尔文-亥姆霍兹(K-H)不稳定性。考虑具有各向异性压力的通常的磁流体动力学方程。在本问题中,平行和垂直于磁场方向的两个压力由多向压力定律定义。使用广义压力关系,并假定两个压力的两个状态方程。方程被线性化,并且最初为系统采用两个不同的流速。假定流动方向垂直于磁场。解决了该问题并获得了色散关系。根据色散关系,获得K-H不稳定性条件。发现不稳定性条件取决于压力关系的多指标。对于MHD和Chew-Goldberger-Low系统,进一步获得了不稳定的条件。还发现不稳定性的增长率取决于各种多方指数。

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