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Mode decomposition scheme for ideal magnetohydrodynamic plane waves in space-time coordinates

机译:模态分解方案理想磁流体动力飞机在时空坐标

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摘要

Exact nonsinusoidal plane wave solutions of the linearized equations of ideal magnetohydrodynamics are used to develop a decomposition scheme for extracting the forward and backward propagating components of the fast, slow, and Alfvén modes from measured data. The decomposition technique is formulated in the space-time domain for waves propagating in one direction. The different wave modes are extracted by means of projection operators that are expressed in matrix form. Because the elements of these matrices are constants, the same projection operators can be used to obtain the mode decomposition in the frequency (Fourier) domain. The projection operators are identical to those obtained by Glassmeier et al. (1995) although they are derived here by different means. In the case of wave propagation parallel or perpendicular to the background magnetic field the wave modes are degenerate and require separate treatment. These special cases are included in the present analysis so the resulting decomposition scheme encompasses all possible propagation directions.
机译:精确的非正弦的平面波解理想的线性化方程磁流体动力学用于开发分解提取方案组件和向后传播的快,从测量数据慢,和阿尔芬模式。分解技术是在制定时空域波传播方向。通过投影操作符用矩阵形式表示的。这些矩阵是常数,相同的投影运营商可以用来获取模式分解在频域(傅里叶)。投影运营商是相同的通过Glassmeier et al。(1995)尽管他们是派生的方式不同。波的传播或平行垂直于磁场背景波模式简并和需要单独的治疗。包含在目前的分析结果包含所有可能的分解方案传播方向。

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