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通过紫外和可见光双波段矢量元全息图的光子加密平台

Photonic Encryption PlatformviaDual-Band Vectorial Metaholograms in the Ultraviolet and Visible

作者:Joohoon Kim;Dongmin Jeon;Junhwa Seong;Trevon Badloe;Nara Jeon;Gyeongtae Kim;Jaekyung Kim;Sangwon Baek;Jong-Lam Lee;Junsuk Rho;

关键词:metasurface encryption,vectorial metahologram,dual-band metahologram,UV metahologram,electron-beam lithographyShow More

DOI:https://doi.org/10.1021/acsnano.1c10100

发表时间:2022年

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摘要

超表面驱动的光加密器件引起了广泛关注。在这里,我们提出了一种用于光学加密的可见光和紫外(UV)区域的双波段矢量元全息图。在紫外激光照射下观察到九个偏振编码矢量全息图,而在可见激光照射下出现另一个独立的全息图。所提出的工程氮化硅在紫外线下是透明的,用于演示紫外线全息图。使用像素化超表面对不同偏振态的九个全息图像进行编码。双波段超全息图是通过堆叠在紫外线和可见光下工作的各个超表面来实验实现的。可见全息图可以被解密以提供第一个密钥,即偏振态,该密钥用于通过使用分析器来解码隐藏在紫外矢量全息图中的密码。考虑到紫外线肉眼不可见的特性、矢量全息图的多个偏振通道以及双波段解耦,所演示的双波段矢量全息装置可应用于各种高安全性和防伪应用。


Abstract

Metasurface-driven optical encryption devices have attracted much attention. Here, we propose a dual-band vectorial metahologram in the visible and ultraviolet (UV) regimes for optical encryption. Nine polarization-encoded vectorial holograms are observed under UV laser illumination, while another independent hologram appears under visible laser illumination. The proposed engineered silicon nitride, which is transparent in UV, is employed to demonstrate the UV hologram. Nine holographic images for different polarization states are encoded using a pixelated metasurface. The dual-band metahologram is experimentally implemented by stacking the individual metasurfaces that operate in the UV and visible. The visible hologram can be decrypted to provide the first key, a polarization state, which is used to decode the password hidden in the UV vectorial hologram through the use of an analyzer. Considering the property of UV to be invisible to the naked eye, the multiple polarization channels of the vectorial hologram, and the dual-band decoupling, the demonstrated dual-band vectorial hologram device could be applied in various high-security and anticounterfeiting applications.