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Wave modes in a magnetoplasma with anisotropic perturbation pressure

机译:具有各向异性摄动压力的磁等离子体中的波模

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The momentum balance equation and the balance equation for the pressure tensor of a collision-free one-species magnetoplasma are linearized and Fourier-transformed, together with Maxwell's curl equations. They are combined in an algebraic dispersion system for the average perturbation velocity of the plasma particles. To do this a set of five fourth-order projectors is introduced, constructed with the aid of a commutative 'ring product' of two second-order projectors. It is shown that the trace-free part of the anisotropic perturbation pressure tensor, usually ignored for the sake of simplicity in such analyses, is of the same order of magnitude as the trace of this tensor. The vanishing determinant of the dispersion system is the dispersion equation of fifth degree in the square of the refractive index.
机译:将无碰撞的一种物质磁质的压力张量的动量平衡方程和平衡方程与麦克斯韦的卷曲方程一起进行线性化和傅立叶变换。将它们组合在代数分散系统中,以获得等离子体粒子的平均摄动速度。为此,引入了五台四阶投影仪,它们是由两台二阶投影仪的可交换“环形积”构成的。结果表明,各向异性扰动压力张量的无迹线部分在这种分析中通常为简单起见而被忽略,其大小与该张量的迹线相同。色散系统的消失决定因素是折射率平方中的五度色散方程。

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