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Full-Wave Analysis of Filtering Behaviour for Laminated Structures

机译:层状结构过滤特性的全波分析

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In this contribution we present the accurate analysis and modeling of periodic optical structures that are finding wide application in photonics. The EM analysis is performed by two different 3D full-wave methods, the Transmission Line Matrix-Integral Equation (TLMIE) and the Generalized Transverse Resonance Diffraction (GTRD). TLMIE is a 3D full-wave hybrid technique in the time-domain which combines the advantages of the numerical TLM method and those of the analytical Green's functions representation for the free-space region, thus providing exact boundary conditions at optical frequencies. In GTRD the dyadic Green's function of a loaded box is used for the modeling of the layered structure, combined with Ohm's law formulation of the volume currents. By using the pre- and post-processing tools of TLMIE and GTRD methods, we investigate the dynamic of the EM field in and outside the structure and evaluate the frequency response of the laminated polarizer behaving as a negative uniaxial crystals. The calculated S-parametrs are compared with measured data showing good agreement.
机译:在这项贡献中,我们提出了对周期性光学结构的精确分析和建模,这些结构在光子学中得到了广泛的应用。 EM分析是通过两种不同的3D全波方法进行的,即传输线矩阵积分方程(TLMIE)和广义横向共振衍射(GTRD)。 TLMIE是时域的3D全波混合技术,它结合了数字TLM方法的优点和自由空间区域的解析格林函数表示的优点,从而在光频率下提供了精确的边界条件。在GTRD中,使用加载盒的二进格林函数对分层结构进行建模,并与体积电流的欧姆定律相结合。通过使用TLMIE和GTRD方法的预处理工具和后处理工具,我们研究了结构内部和外部的EM场的动态,并评估了表现为负单轴晶体的层压偏振器的频率响应。将计算出的S参数与显示出良好一致性的测量数据进行比较。

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