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用于反射中高效相位控制的表面等离激元超表面

Plasmonic metasurfaces for efficient phase control in reflection.

作者信息

Pors Anders, Bozhevolnyi Sergey I

出版信息

Opt Express. 2013 Nov 4;21(22):27438-51. doi: 10.1364/oe.21.027438.

Abstract

We numerically study the optical properties of metal-insulator-metal resonators and metasurfaces, emphasizing the presence of gap-surface plasmon (GSP) resonances and their connection to the optical response. In relation to birefringent metal-backed metasurfaces, we show how a combination of metal nanobrick and nanocross elements allows one to fully control the phase of reflected light for two orthogonal polarizations simultaneously. The approach is exemplified by the design of a gradient birefringent metasurface that reflects two orthogonal polarization states into +2 and -3 diffraction order, respectively, with a reflectivity up to ~ 80% and in a broad wavelength range around the design wavelength of 800 nm. Finally, we introduce the concept of metascatterers, which are wavelength-sized polarization-sensitive scatterers.

摘要

我们对金属-绝缘体-金属谐振器和超表面的光学特性进行了数值研究,重点关注能隙表面等离子体(GSP)共振的存在及其与光学响应的联系。关于双折射金属背超表面,我们展示了金属纳米砖和纳米十字元件的组合如何使人们能够同时完全控制两个正交偏振光的反射光相位。通过设计一种梯度双折射超表面来举例说明该方法,该超表面将两个正交偏振态分别反射到 +2 和 -3 衍射级,反射率高达约 80%,且在 800 nm 设计波长附近的宽波长范围内均如此。最后,我们引入了超散射体的概念,即波长尺寸的偏振敏感散射体。

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