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双层梯度超表面中的大非对称异常反射

Large asymmetric anomalous reflection in bilayer gradient metasurfaces.

作者信息

Dong Guohua, Jiang Zhongjiao, Li Yicheng, Zhu Zheng, Lv Tingting, Sun Mengke, Lv Bo, Li Yuxiang, Guan Chunying, Liu Zhihai, Shi Jinhui

出版信息

Opt Express. 2021 May 24;29(11):16769-16780. doi: 10.1364/OE.425987.

Abstract

Gradient metasurfaces have attracted much attention due to intriguing wavefront and polarization manipulation. Here, a bilayer gradient metasurface is constructed by use of a rectangular nanorod layer and its complementary nanoaperture. It reveals asymmetric anomalous reflection and symmetric anomalous transmission for two counter-propagating directions. The dependence of the anomalous reflection and transmission phenomena on nanostructure thickness are numerically studied in optical frequencies. The increasing metallic layer thickness of the gradient metasurface greatly enhances anomalous reflection of the left-handed circularly polarized wave (LCP) for the nanorod side and suppresses anomalous reflection for the other side. Both resonant frequencies of anomalous reflection and transmission linearly shift with the refractive index. The bilayer gradient metasurface is important for realizing wavefront modulation and optical sensing.

摘要

由于具有引人入胜的波前和偏振操纵特性,梯度超表面已引起了广泛关注。在此,通过使用矩形纳米棒层及其互补纳米孔径构建了一种双层梯度超表面。它揭示了两个反向传播方向的不对称异常反射和对称异常透射。在光学频率下,通过数值研究了异常反射和透射现象对纳米结构厚度的依赖性。梯度超表面金属层厚度的增加极大地增强了纳米棒一侧左旋圆偏振波(LCP)的异常反射,并抑制了另一侧的异常反射。异常反射和透射的共振频率均随折射率线性移动。双层梯度超表面对于实现波前调制和光学传感具有重要意义。

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