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超轻薄非线性超表面用于光学图像编码。

Ultrathin Nonlinear Metasurface for Optical Image Encoding.

机构信息

Department of Physics, University of Paderborn , Warburger Strasse 100, 33098 Paderborn, Germany.

Department of Materials Science and Engineering, Southern University of Science and Technology , 1088 Xueyuan Avenue, Shenzhen, 518055, China.

出版信息

Nano Lett. 2017 May 10;17(5):3171-3175. doi: 10.1021/acs.nanolett.7b00676. Epub 2017 Apr 18.

Abstract

Security of optical information is of great importance in modern society. Many cryptography techniques based on classical and quantum optics have been widely explored in the linear optical regime. Nonlinear optical encryption in which encoding and decoding involve nonlinear frequency conversions represents a new strategy for securing optical information. Here, we demonstrate that an ultrathin nonlinear photonic metasurface, consisting of meta-atoms with 3-fold rotational symmetry, can be used to hide optical images under illumination with a fundamental wave. However, the hidden image can be read out from second harmonic generation (SHG) waves. This is achieved by controlling the destructive and constructive interferences of SHG waves from two neighboring meta-atoms. In addition, we apply this concept to obtain gray scale SHG imaging. Nonlinear metasurfaces based on space variant optical interference open new avenues for multilevel image encryption, anticounterfeiting, and background free image reconstruction.

摘要

光学信息的安全性在现代社会中至关重要。许多基于经典和量子光学的密码技术已经在线性光学领域得到了广泛的探索。在非线性光学加密中,编码和解码涉及非线性频率转换,这代表了一种保护光学信息的新策略。在这里,我们证明了一种由具有 3 重旋转对称性的元原子组成的超薄非线性光子超表面可用于在基本波照明下隐藏光学图像。然而,隐藏的图像可以从二次谐波产生 (SHG) 波中读取出来。这是通过控制来自两个相邻元原子的 SHG 波的相消和相长干涉来实现的。此外,我们应用这一概念来获得灰度 SHG 成像。基于空间变分光干涉的非线性超表面为多级图像加密、防伪和无背景图像重建开辟了新途径。

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