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Plasma microinstabilities driven by loss-cone distributions

机译:损失锥体分布驱动的血浆微不稳定性

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Electromagnetic and electrostatic instabilities driven by loss-cone particle distributions have been invoked to explain a variety of plasma phenomena observed in space and in the laboratory. In this paper we analyse how the loss-cone feature (as determined by the loss-cone index or indices) influences the growth of such instabilities in a fully ionized, homogeneous, hot plasma in a uniform magnetic field. Specifically, we consider three loss-cone distributions: a generalized Lorentzian (kappa) loss-cone distribution, the Dory-Guest-Harris distribution and the Ashour-Abdalla-Kennel distribution (involving a sub-tracted Maxwellian). Our findings are common to all three distributions. We find that, for parallel propagation, electromagnetic'instabilities are only affected by the loss-cone indices in term's of their occurrence in the temperature anisotropy-However, for oblique propagation, even including propagation at small angles to the ambient magnetic field, the loss-cone indices do independently affect the growth of instabilities for electromagnetic waves, in contrast to certain claims in the literature. For electrostatic waves such that (fcxpto.)2 <1, where kx is the component of the wave vector perpendicular to the ambient magnetic field and pLa is the Larmor radius for particle species cr, we find that the loss-cone indices only enter the dispersion equation via the temperature anisotropy, and so in this case the loss-cone feature and perpendicular effective thermal speed do not independently affect wave growth.
机译:由损耗锥形粒子分布驱动的电磁和静电不稳定性已被用来解释在空间和实验室中观察到的各种等离子体现象。在本文中,我们分析了损耗圆锥特征(由一个或多个损耗圆锥指数确定)如何影响均匀磁场中完全电离,均匀,热等离子体中此类不稳定性的增长。具体来说,我们考虑了三种损失锥分布:广义洛伦兹(kappa)损失锥分布,Dory-Guest-Harris分布和Ashour-Abdalla-Kennel分布(涉及减法Maxwellian)。我们的发现是这三个分布的共同点。我们发现,对于平行传播,电磁“不稳定性”仅受其在温度各向异性方面的损耗锥指数的影响;但是,对于倾斜传播,甚至包括与环境磁场成小角度的传播,损耗与文献中的某些主张相反,-圆锥指数确实独立地影响电磁波的不稳定性的增长。对于(fcxpto。)2 <1的静电波,其中kx是垂直于环境磁场的波矢的分量,而pLa是粒子种类cr的拉莫尔半径,我们发现损耗锥指数仅进入色散方程通过温度各向异性来实现,因此在这种情况下,损耗锥特征和垂直有效热速不会独立影响波的增长。

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