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具有全偏振自由度的全彩色全息显示与加密

Full-Color Holographic Display and Encryption with Full-Polarization Degree of Freedom.

作者信息

Guo Xuyue, Zhong Jinzhan, Li Bingjie, Qi Shuxia, Li Yu, Li Peng, Wen Dandan, Liu Sheng, Wei Bingyan, Zhao Jianlin

机构信息

MOE Key Laboratory of Material Physics and Chemistry under Extraordinary Conditions, Shaanxi Key Laboratory of Optical Information Technology, School of Physical Science and Technology, Northwestern Polytechnical University, Xi'an, 710129, China.

Xi'an Mingde Institute of Technology, Xi'an, 710124, China.

出版信息

Adv Mater. 2022 Jan;34(3):e2103192. doi: 10.1002/adma.202103192. Epub 2021 Aug 7.

Abstract

Metasurfaces provide a compact and powerful platform for manipulating the fundamental properties of light, and have shown unprecedented capabilities in both optical holographic display and information encryption. For increasing information display/storage capacity, metasurfaces with more polarization manipulation channel and full-color holographic functionality are now an urgent requirement. Here, a minimalist dielectric metasurface with the capability of full-color holography encoded with arbitrary polarization is proposed and experimentally demonstrated. Without the daunting exploratory and computational problem in nanostructure searching, full-color holographic images can be multiplexed into arbitrary polarization channels through vectorial ptychography and k-space ptychography based on tetratomic macropixel geometric phase metasurfaces. Thanks to the full degree of freedom tuning in polarization and color spaces, the application scenarios such as holographic 3D imaging and information encryption are realized. The strategy exhibits promising potential in applications of 3Dl display, augmented/virtual reality, high-density data storage, and encryption.

摘要

超表面为操控光的基本特性提供了一个紧凑而强大的平台,并且在光学全息显示和信息加密方面都展现出了前所未有的能力。为了增加信息显示/存储容量,具有更多偏振操控通道和全彩色全息功能的超表面成为了当下的迫切需求。在此,我们提出并通过实验证明了一种具有任意偏振编码全彩色全息能力的极简介电超表面。无需在纳米结构搜索中面临艰巨的探索和计算问题,基于四原子大像素几何相位超表面,全彩色全息图像可通过矢量叠层成像和k空间叠层成像被复用至任意偏振通道。得益于偏振和颜色空间中的全自由度调谐,实现了诸如全息3D成像和信息加密等应用场景。该策略在3D显示、增强/虚拟现实、高密度数据存储和加密等应用中展现出了广阔的潜力。

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