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Propagation of High-Frequency Electromagnetic Waves Through a Magnetized Plasma in Curved Spaces-Time. II. Application of the Asymptotic Approximation

机译:高频电磁波在弯曲时空中通过磁化等离子体的传播。 II。渐近逼近的应用

摘要

This is the second of two papers on the propagation of high-frequency electromagnetic waves through an inhomogeneous, non-stationary plasma in curved space-time. By applying the general two-scale W.K.B. method developed in part I to the basic wave equation, derived also in that paper, we here obtain the dispersion relation, the rays, the polarization states and the transport laws for the amplitudes of these waves. In an unmagnetized plasma the transport preserves the helicity and the eccentricity of the polarization state along each ray; the axes of the polarization ellipse rotate along a ray, relative to quasiparallely displaced directions, at a rate determined by the vorticity of the electron fluid; and the norm of the amplitude changes according to a conservation law which can be interpreted as the constancy of the number of quasiphotons. In a magnetized plasma the polarization state changes differently for ordinary and extraordinary waves, according to the angle between the wavenormal and the background magnetic field, and under specified approximation conditions the direction of polarization of linearly polarized waves undergoes a generalized Faraday rotation.
机译:这是两篇关于在弯曲时空中通过非均匀,非平稳等离子体传播高频电磁波的论文的第二篇。通过应用一般的两尺度W.K.B.在第一部分中对基础波方程进行了改进的方法,该方法也在该论文中得到了推导,我们在这里获得了色散关系,射线,偏振态以及这些波的振幅的传输定律。在未磁化的等离子体中,传输沿每个射线保留了偏振态的螺旋度和偏心率。极化椭圆的轴沿射线相对于准平行位移方向旋转,其速率由电子流体的涡度确定;振幅的范数根据守恒定律而变化,这可以解释为准光子数的恒定性。在磁化等离子体中,普通波和异常波的极化状态会根据波垂直与背景磁场之间的夹角而变化,并且在指定的近似条件下,线性极化波的极化方向会经历法拉第旋转。

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    Breuer R.; Ehlers J.;

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  • 年度 1981
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