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Plasmonic dimer metamaterials and metasurfaces for polarization control of terahertz and optical waves

机译:等离子体二聚体超材料和超表面用于太赫兹和光波的偏振控制

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We explore the capabilities of planar metamaterials and metasurfaces to control and transform the polarization of electromagnetic radiation, and present a detailed covariant multipole theory of dimer-based metamaterials. We show that various optical properties, such as optical activity, elliptical dichroism or polarization conversion can be achieved in metamaterials made of simple shapes, such as nanorods, just by varying their geometrical arrangement. By virtue of the Babinet principle, the proposed theory is extended to inverted structures (membranes) where rods are replaced by slots. Such free-standing “metasurface membranes” can act as thin-film spectrally sensitive polarization shapers for THz radiation. Proof-of-principle devices (a linear polarizer and a structure with giant optical activity) are fabricated and characterized. Experimental results coincide with those of full-wave numerical simulations, and are in good agreement with analytical predictions.
机译:我们探索了平面超材料和超表面控制和转换电磁辐射极化的能力,并提出了基于二聚体的超材料的详细协变多极理论。我们表明,仅通过改变它们的几何排列,就可以在由简单形状制成的超材料(例如纳米棒)中实现各种光学特性,例如光学活性,椭圆二色性或偏振转换。借助巴比涅原理,将所提出的理论扩展到杆被槽替代的倒置结构(膜)。这种独立的“表面膜”可以充当太赫兹辐射的薄膜光谱敏感型偏振整形器。原理证明装置(线性偏振器和具有巨大光学活性的结构)被制造和表征。实验结果与全波数值模拟的结果一致,并且与分析预测非常吻合。

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