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Analysis of Complex Dielectric Phase Gratings by Hybrid FEM-Gaussian Mode Expansion Technique

机译:混合有限元-高斯模式扩展技术分析复介电相位光栅

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摘要

Hybrid technique of finite element method (FEM) and Gaussian mode expansion method is implemented for the analysis of transmission property of dielectric phase gratings used in holographic power combining systems. It takes advantages of the versatility of FEM and the simplicity of the mode expansion method. Apparently, this hybrid method is well suited for the analysis of phase gratings with complex profiles, which provide more degrees of structural freedom than those of classical rectangular groove gratings. The transmitted fields of an array of two and three fundamental Gaussian beams through the multi-stepped and curved gratings are calculated by the hybrid method. Numerical results show that much less phase distortion can be fulfilled for the reconstructed pseudo-plane wave by the modified phase gratings, especially the curved ones. This is advantageous for improving the combining efficiency in spatial millimeter wave and sub-millimeter wave power combining systems.
机译:为了分析全息功率合成系统中所使用的介电相位光栅的透射特性,采用了有限元方法(FEM)和高斯模式扩展方法的混合技术。它利用了FEM的多功能性和模式扩展方法的简便性。显然,这种混合方法非常适合于分析具有复杂轮廓的相位光栅,与传统的矩形凹槽光栅相比,这种光栅提供了更大的结构自由度。用混合方法计算出两个和三个基本高斯光束通过多步弯曲曲面光栅的透射场。数值结果表明,利用改进的相位光栅,尤其是弯曲的相位光栅,可以使重构的伪平面波实现的相位失真小得多。这对于提高空间毫米波和亚毫米波功率合成系统中的合成效率是有利的。

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