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首页> 外文期刊>Magnetics, IEEE Transactions on >Consistent Modeling of Periodic Metasurfaces With Bianisotropic Scatterers for Oblique TE-Polarized Plane Wave Excitation
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Consistent Modeling of Periodic Metasurfaces With Bianisotropic Scatterers for Oblique TE-Polarized Plane Wave Excitation

机译:斜TE-极化平面波激励的周期各向异性副面散射的一致建模

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摘要

In this paper, a new method for the consistent analysis of periodic metasurfaces with bianisotropic particles is introduced. The proposed technique combines a microscopic modeling approach at the level of the constituting meta-atoms with a macroscopic equivalent surface characterization, to unambiguously determine a set of surface susceptibilities that properly predict the reflection and transmission properties of the metasurface. Comparisons with alternative schemes and full-wave simulation results for bianisotropic scatterers, frequently utilized as building blocks of realistic metasurfaces, are provided in order to validate the featured algorithm.
机译:本文介绍了一种用各向异性粒子对周期超颖表面进行一致性分析的新方法。所提出的技术在构成的亚原子的层面上将微观建模方法与等效的宏观表面特征相结合,以明确确定一组表面磁化率,以正确预测超表面的反射和透射特性。为了验证该特征算法的有效性,提供了对与各向异性散射体的替代方案和全波仿真结果的比较结果,这些散射体经常被用作逼真的超颖表面的构建块。

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