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Diffraction of Plane Waves by an Impedance Half-Plane In Cold Plasma

机译:等离子体中阻抗半平面对平面波的衍射

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In the present work, diffraction of plane waves by an impedance half-plane in a cold plasma is investigated. A cold plasma may correspond to the ionosphere under the presence of the earth magnetic field where the effect of the finite tempreture and the pressurevariations are ignored. The antenna and wave propagation characteristics in the ionoshpere are important in satellite communication. An impedence half-plane in a cold plasma is a canonical configuration which may be used in modelling scattering from a variety of complex objects. The boundary-value problem corresponding to the canonical configuration is formulated by Fourier transform technique which leads to a matrix Wiener-Hopf equation. The kemel matrix is expressed in Daniele-Krapkov form which yields a rigorous solution to the problem under consideration. The field expressions can easily be obtained by the standard saddle-point technique.
机译:在本工作中,研究了在冷等离子体中由阻抗半平面引起的平面波的衍射。在存在地磁场的情况下,冷等离子体可能对应于电离层,而忽略了有限温度和压力变化的影响。电离层的天线和波传播特性在卫星通信中很重要。冷等离子体中的阻抗半平面是一种标准配置,可用于对来自各种复杂对象的散射进行建模。通过傅立叶变换技术,提出了与规范构型相对应的边值问题,从而得到了矩阵维纳-霍夫方程。 kemel矩阵以Daniele-Krapkov形式表示,它为所考虑的问题提供了严格的解决方案。可以通过标准鞍点技术轻松获得字段表达式。

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