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Plane-wave scattering by self-complementary metasurfaces in terms of electromagnetic duality and Babinet's principle

机译:根据电磁对偶和巴比涅原理的自互补超表面的平面波散射

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摘要

We investigate theoretically electromagnetic plane-wave scattering by self-complementary metasurfaces. By using Babinet's principle extended to metasurfaces with resistive elements, we show that the frequency-independent transmission and reflection are realized for normal incidence of a circularly polarized plane wave onto a self-complementary metasurface, even if there is diffraction. Next, we consider two special classes of self-complementary metasurfaces. We show that self-complementary metasurfaces with rotational symmetry can act as coherent perfect absorbers, and those with translational symmetry compatible with their self-complementarity can split the incident power equally, even for oblique incidences.
机译:我们在理论上研究了自互补超表面的电磁平面波散射。通过使用Babinet原理扩展到带有电阻性元素的超颖表面,我们表明,即使存在衍射,圆偏振平面波垂直入射到自互补超颖表面上也能实现与频率无关的透射和反射。接下来,我们考虑两类特殊的自互补超表面。我们证明,具有旋转对称性的自互补形超表面可以充当相干的完美吸收体,而具有平移对称性且与其自互补性兼容的自互补形超表面可以均匀地分配入射功率,即使是斜入射。

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