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基于可见频率超表面的具有独立幅度加密的角向复用纳米打印

Angular Multiplexing Nanoprinting with Independent Amplitude Encryption Based on Visible-Frequency Metasurfaces.

作者信息

Tang Jiao, Li Zhe, Wan Shuai, Wang Zejing, Wan Chengwei, Dai Chenjie, Li Zhongyang

机构信息

Electronic Information School, Wuhan University, Wuhan 430072, China.

出版信息

ACS Appl Mater Interfaces. 2021 Aug 18;13(32):38623-38628. doi: 10.1021/acsami.1c10881. Epub 2021 Aug 9.

Abstract

Two-dimensional (2D) metasurfaces hold great promise to enable multiplexing and multifunctional optical devices due to their artificial freedom in design, device miniaturization, etc. Various multiplexing and multifunctional metasurfaces have been extensively studied, including polarization multiplexing, wavelength multiplexing, and orbit angular momentum (OAM) multiplexing. However, due to the lack of angular encoding freedom, angular multiplexing switchable nanoprinting has rarely been studied or demonstrated yet to the best of our knowledge. Here, we realize angular multiplexing switchable nanoprinting functionality with independent amplitude encryption based on visible-frequency metasurfaces. By screening a large number of structural designs and breaking the angular correlation, we eventually obtain optimal metasurface designs to realize dual-channel arbitrary image encryption. Furthermore, we illustrate that the proposed scheme would serve as an optical information concealment/retrieval strategy by combining the structural color and amplitude modulation. Overall, we believe that angular multiplexing metasurfaces would easily find promising applications, including optical information encryption/concealment, multifunctional switchable devices, and advanced eyeglass-free three-dimensional (3D) stereoscopic displays.

摘要

二维(2D)超表面由于其在设计上的人为自由度、器件小型化等特点,在实现复用和多功能光学器件方面具有巨大潜力。各种复用和多功能超表面已得到广泛研究,包括偏振复用、波长复用和轨道角动量(OAM)复用。然而,据我们所知,由于缺乏角度编码自由度,角度复用可切换纳米打印很少被研究或证明。在此,我们基于可见光频率超表面,通过独立幅度加密实现了角度复用可切换纳米打印功能。通过筛选大量结构设计并打破角度相关性,我们最终获得了最优超表面设计,以实现双通道任意图像加密。此外,我们表明,通过结合结构颜色和幅度调制,所提出的方案将作为一种光学信息隐藏/检索策略。总体而言,我们相信角度复用超表面将很容易找到有前景的应用,包括光学信息加密/隐藏、多功能可切换器件以及先进的无眼镜三维(3D)立体显示器。

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