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Fast and Accurate Analysis of Optical Metamaterials Using Surface Integral Equations and the Parallel Multilevel Fast Multipole Algorithm

机译:使用曲面整体方程和平行多级快速多极算法快速准确地分析光学超材料

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We present fast and accurate simulations of optical metamaterials using surface integral equations and the multilevel fast multipole algorithm (MLFMA). Problems are formulated with the electric and magnetic current combined-field integral equation and solved iteratively with MLFMA, which is parallelized using the hierarchical strategy on distributed-memory architectures. Realistic metamaterials involving dielectric, perfectly conducting, and plasmonic regions of finite extents are solved rigorously with the developed implementation without any periodicity assumptions.
机译:我们使用表面整体方程和多级快速多极算法(MLFMA)呈现快速准确地模拟光学超材料。用电流和磁电流组合场积分方程配制出问题,并用MLFMA迭代地解决,MLFMA使用分布式存储器架构上的分层策略并行化。涉及介电,完全导电和有限范围的等级区域的现实超材料在没有任何周期性假设的情况下严格地解决了有限范围的严格解决。

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