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基于液晶可调双层超表面的热调谐纳米打印用于光学信息加密。

Thermal tuning nanoprinting based on liquid crystal tunable dual-layered metasurfaces for optical information encryption.

作者信息

Zhang Shijie, Wang Qi, Zeng Ruimei, Chang Chenliang, Zhang Dawei, Zhuang Songlin

出版信息

Opt Express. 2024 Jan 29;32(3):4639-4649. doi: 10.1364/OE.514603.

Abstract

Dynamic tuning metasurfaces represent a significant advancement in optical encryption techniques, enabling highly secure multichannel responses. This paper proposes a liquid crystal (LC) tunable dual-layered metasurface to establish a thermal-encrypted optical platform for information storage. Through the screening of unit cells and coupling of characteristics, a dynamic polarization-dependent beam-steering metasurface is vertically cascaded with an angular multiplexing nanoprinting metasurface, separated by a dielectric layer. By integrating high-birefringence LCs into dual-layered metasurfaces, the cascaded meta-system can achieve dynamic thermal-switching for pre-encoded nanoprinting images. This work provides a promising solution for developing compact dynamic meta-systems for customized optical storage and information encryption.

摘要

动态调谐超表面代表了光学加密技术的重大进步,能够实现高度安全的多通道响应。本文提出了一种液晶(LC)可调谐双层超表面,以建立用于信息存储的热加密光学平台。通过对单元胞的筛选和特性耦合,一个动态偏振依赖光束转向超表面与一个角复用纳米打印超表面垂直级联,中间由一个介电层隔开。通过将高双折射液晶集成到双层超表面中,级联的超表面系统可以实现对预编码纳米打印图像的动态热切换。这项工作为开发用于定制光存储和信息加密的紧凑型动态超表面系统提供了一个有前景的解决方案。

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