全息术
等离子体子
极化(电化学)
不对称
振幅
光学
光电子学
加密
材料科学
物理
计算机科学
化学
量子力学
操作系统
物理化学
作者
Daniel Frese,Qunshuo Wei,Yongtian Wang,Lingling Huang,Thomas Zentgraf
出处
期刊:Nano Letters
[American Chemical Society]
日期:2019-05-03
卷期号:19 (6): 3976-3980
被引量:105
标识
DOI:10.1021/acs.nanolett.9b01298
摘要
As flexible optical devices that can manipulate the phase and amplitude of light, metasurfaces would clearly benefit from directional optical properties. However, single layer metasurface systems consisting of two-dimensional nanoparticle arrays exhibit only a weak spatial asymmetry perpendicular to the surface and therefore have mostly symmetric transmission features. Here, we present a metasurface design principle for nonreciprocal polarization encryption of holographic images. Our approach is based on a two-layer plasmonic metasurface design that introduces a local asymmetry and generates a bidirectional functionality with full phase and amplitude control of the transmitted light. The encoded hologram is designed to appear in a particular linear cross-polarization channel, while it is disappearing in the reverse propagation direction. Hence, layered metasurface systems can feature asymmetric transmission with full phase and amplitude control and therefore expand the design freedom in nanoscale optical devices toward asymmetric information processing and security features for anticounterfeiting applications.
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