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Microwave Analysis of Scattered and Absorbed Powers of Semiconductor and Metamaterial Cylinder Structures

机译:半导体和超材料圆柱结构的散射和吸收功率的微波分析

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摘要

Here is presented our numerical investigations based on the rigorous solution of the Maxwell’s equations for analyses of absorbed and scattered powers of a semiconductor-metamaterial array with a window defect. The array structure consists of a finite set of infinite parallel, circular cylinders that can be made of the different lossy and/or lossless isotropic materials. We used our developed computer code, which allowed us to consider an array consisting of an arbitrary number of cylinders. According to our code, cylinders can be located at different distances and have differing diameters. There is a limitation: Cylinders should not cross each other. We numerically examined two cylindrical arrays with electromagnetic (EM) band-gap (EBG) defects. The absorbed and scattered powers were analyzed there for parallel and perpendicular polarizations of the incident microwave. We investigated dependencies on the operating frequency and the radius (R) of an arc of the arranged thirteen n-Si cylinders with the low semiconductor specific resistivity of 0.5, 2, and 10 Ω∙m. We have discovered that the arrays may have features of a waveguide or a microwave reflector.
机译:这里介绍了我们基于麦克斯韦方程组严格解的数值研究,用于分析具有窗口缺陷的半导体超材料阵列的吸收和散射功率。阵列结构由有限的一组无限的平行圆柱构成,这些圆柱可以由不同的有损和/或无损各向同性材料制成。我们使用了开发的计算机代码,这使我们可以考虑由任意数量的圆柱组成的数组。根据我们的规范,圆柱体可以位于不同的距离并具有不同的直径。有一个限制:气瓶不应相互交叉。我们从数值上检查了两个具有电磁(EM)带隙(EBG)缺陷的圆柱阵列。在那里分析了入射微波的平行和垂直极化的吸收和散射功率。我们研究了排列的十三个n-Si圆柱体的工作频率和圆弧半径(R)的依赖性,这些圆柱体的半导体电阻率低,分别为0.5、2和10Ω·m。我们已经发现,阵列可以具有波导或微波反射器的特征。

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