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Spectral-Element Spectral-Integral (SESI) Method for Doubly Periodic Problems With 3-D Scatterers Embedded in Multiple Regions of Layered Media

机译:光谱元素谱积分 (SESI) 方法,用于处理嵌入层状介质多个区域的三维散射体的双周期问题

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摘要

In this work, a hybrid 3-D spectral-element spectral-integral (SESI) method is developed by combining the spectral element method (SEM) and spectral integral method (SIM) for the fast evaluation of electromagnetic (EM) scattering from double Bloch (Floquet) periodic problems with 3-D scatterers embedded in multiple regions of layered media. This 3-D SESI method is a further extension of the previously developed 2-D SESI method. In the proposed method, the computational domain is divided into several SEM and SIM subdomains, where the subdomains are coupled by Riemann transmission conditions (RTCs) to allow the use of nonconforming meshes for these subdomains. Meanwhile, the 3-D periodic layered medium Green#x2019;s function (PLMGF) is derived and employed to simulate 3-D structures in layered media without their volumetric discretization. Four numerical experiments show that the developed SIM method is highly efficient and accurate; the SESI method is more efficient than the traditional finite element method (FEM), thus is a promising solver for designing and optimizing frequency selective surfaces (FSSs), metamaterials, and metasurfaces.
机译:该文将光谱元法(SEM)和谱积分法(SIM)相结合,开发了一种混合三维谱元谱积分(SESI)方法,用于快速评估嵌入层状介质多个区域的三维散射体的双布洛赫(Floquet)周期问题的电磁(EM)散射。这种3-D SESI方法是先前开发的2-D SESI方法的进一步扩展。在所提出的方法中,计算域被划分为几个SEM和SIM子域,其中子域通过黎曼透射条件(RTC)耦合,以允许对这些子域使用不合格网格。同时,推导了三维周期性层状介质格林函数(PLMGF),并用于模拟层状介质中的三维结构,而无需进行体积离散化。4项数值实验表明,所研制的SIM方法高效、准确;SESI方法比传统的有限元方法(FEM)效率更高,是设计和优化频率选择表面(FSS)、超材料和超表面的有前途的求解器。

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