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Skew Incidence Diffraction by an Anisotropic Impedance Half Plane With a PEC Face and Arbitrarily Oriented Anisotropy Axes

机译:具有PEC面和任意方向的各向异性轴的各向异性阻抗半平面的斜入射衍射

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High-frequency expressions for the field scattered by a half-plane with a perfectly conducting and an anisotropic impedance face are provided in the format of the uniform geometrical theory of diffraction (UTD), when the half-plane is illuminated by an arbitrarily polarized plane wave obliquely incident on its edge. The loaded face is characterized by a tensor surface impedance with principal anisotropy axes arbitrarily oriented with respect to the edge; a vanishing surface impedance is exhibited in one of the principal directions. This kind of tensor surface impedance can be suitably applied for analyzing the effects on the scattered field of corrugated surfaces or grounded dielectric slabs periodically loaded by metallic strips. This solution extends previous high-frequency formulations valid in those cases in which the direction of corrugations or strips is either parallel or perpendicular to the edge. The analysis is performed by resorting to the Sommerfeld-Maliuzhinets method. To determine the spectral solution, a special function is needed that differs from the standard Maliuzhinets one and was originally introduced to study the electromagnetic scattering by a wedge embedded in a gyroelectric medium.
机译:当半平面由任意偏振平面照射时,以均匀的几何衍射理论(UTD)的形式提供由具有完美导电和各向异性阻抗面的半平面散射的场的高频表达式。波倾斜地入射在其边缘。加载面的特征在于张量表面阻抗,其主各向异性轴相对于边缘任意定向;在主要方向之一上呈现出消失的表面阻抗。这种张量表面阻抗可适当地用于分析对金属板周期性加载的波纹表面或接地电介质板的散射场的影响。该解决方案扩展了先前的高频公式,在波纹或带的方向平行于或垂直于边缘的情况下有效。通过使用Sommerfeld-Maliuzhinets方法进行分析。为了确定频谱解,需要一种不同于标准Maliuzhinets的特殊函数,该函数最初是用来研究嵌入在回旋电介质中的楔形物的电磁散射的。

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