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首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >E-polarized plane wave diffraction by an impedance loaded parallel-plate waveguide located in cold plasma
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E-polarized plane wave diffraction by an impedance loaded parallel-plate waveguide located in cold plasma

机译:位于冷等离子体中的阻抗加载平行板波导对E偏振平面波的衍射

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摘要

The effects of wall impedances with cold plasma permittivity on an E-polarized electromagnetic signal propagating through a parallel-plate waveguide immersed in a cold plasma have been analyzed. The Helmholtz equation in cold plasma is derived from the model equations. The solution of the Helmholtz equation in cold plasma is determined by Wiener-Hopf technique. From the solution it is observed that the amplitude of the diffracted field decreases with increasing permittivity of the plasma (i.e., by decreasing electron number density (or plasma frequency) or by increasing ion number density). The work presented may be of great importance to quantify the effects of ionosphere plasma on the communicating signals between an Earth station and an artificial satellite in Earth's atmosphere.
机译:分析了具有冷等离子体介电常数的壁阻抗对通过浸没在冷等离子体中的平行板波导传播的E极化电磁信号的影响。冷等离子体中的亥姆霍兹方程由模型方程导出。通过Wiener-Hopf技术确定冷等离子体中Helmholtz方程的解。从溶液中观察到,随着等离子体的介电常数的增加(即,通过降低电子数密度(或等离子体频率)或通过增加离子数密度),衍射场的幅度减小。提出的工作对于量化电离层等离子体对地球站与地球大气中人造卫星之间的通信信号的影响可能非常重要。

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