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Analysis of double-negative materials with surface integral equations and the multilevel fast multipole algorithm

机译:具有表面积分方程和多级快速多极子算法的双负材料分析

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摘要

We present a fast and accurate analysis of double-negative materials (DNMs) with surface integral equations and the multilevel fast multipole algorithm (MLFMA). DNMs are commonly used as simplified models of metamaterials at resonance frequencies and are suitable to be formulated with surface integral equations. However, realistic metamaterials and their models are usually very large with respect to wavelength and their accurate solutions require fast algorithms, such as MLFMA. We consider iterative solutions of DNMs with MLFMA and we investigate the accuracy and efficiency of solutions when DNMs are formulated with two recently developed formulations, namely, the combined tangential formulation (CTF) and the electric and magnetic current combined-field integral equation (JMCFIE). Numerical results on canonical objects are consistent with previous results in the literature on ordinary objects.
机译:我们通过表面积分方程和多级快速多极子算法(MLFMA),对双负材料(DNM)进行了快速,准确的分析。 DNM通常用作共振频率下超材料的简化模型,适用于用表面积分方程式表示。但是,现实的超材料及其模型通常在波长方面非常大,其精确的解决方案需要快速算法,例如MLFMA。我们考虑使用MLFMA进行DNM的迭代解,并研究使用两种最新开发的公式(即组合切向公式(CTF)和电磁电流组合场积分方程(JMCFIE))配制DNM时解决方案的准确性和效率。 。规范对象的数值结果与文献中有关普通对象的先前结果一致。

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