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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Whistler propagation in inhomogeneous plasma
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Whistler propagation in inhomogeneous plasma

机译:惠斯勒非均匀等离子体中传播

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摘要

We present a numerical study of the propagation of VLF whistler waves in the magnetospheric plasma. In this study the plasma is considered to be homogeneous in the direction along the ambient magnetic field and strongly inhomogeneous across it. The goal of this investigation is to understand whistler propagation in magnetic-field-aligned channels (also called ducts) with either enhanced or depleted plasma density. In particular, the paper is focused on situations where the transverse scale size of the duct is comparable to or smaller than the perpendicular wavelength of the whistler. In this case, classical analysis of the whistler dynamics based on the geometrical optic approximation becomes invalid, and numerical solutions of the full wave equations should be performed. Our simulations extend the earlier analysis based on the ray-tracing technique and analytical studies of the very low frequency wave equations. We show that high-density ducts are inherently leaky and this leakage depends on the perpendicular wavelength of the wave inside the duct. We also show that whistler trapping occurs not only at density maxima and minima but also at critical points along a density gradient. This effect can explain whistler guiding along strong transverse plasma density gradients at the plasmapause.
机译:提出了一种数字传播的研究甚低频惠斯勒波的磁性层的等离子体。在这项研究中等离子体被认为是沿着周围均匀的方向磁场和强不均匀它。理解惠斯勒传播(也称为magnetic-field-aligned通道导管)增强或枯竭的等离子体密度。情况下的横向规模大小管是类似于或小于惠斯勒的垂直波长。情况下,古典的惠斯勒动力学分析基于几何光学近似变得无效,和数值解全波方程应该执行。模拟扩展前面的分析基础上射线跟踪技术和分析研究极低频率的波方程。高密度管本身是漏水的,这取决于泄漏垂直管道内波的波长。表明,惠斯勒不仅发生在被困密度最大值和最小值,也至关重要点密度梯度。惠斯勒解释指导以及强烈的横向等离子体密度梯度等离子体层顶。

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