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虎形护身符通过液晶实现了高安全性全息加密。

Tiger Amulet inspired high-security holographic encryption via liquid crystals.

作者信息

Huang Xianjing, Zhu Dong, Zhou Zhou, Chen Kuixian, Zheng Guoxing, Chen Peng, Lu Yan-Qing, Li Zile

机构信息

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

National Laboratory of Solid State Microstructures, Key Laboratory of Intelligent Optical Sensing and Manipulation, and College of Engineering and Applied Sciences, Nanjing University, Nanjing 210023, China.

出版信息

Nanophotonics. 2023 Mar 15;12(9):1787-1795. doi: 10.1515/nanoph-2023-0040. eCollection 2023 Apr.

Abstract

Due to the precise and continuous regulation of phase, holographic encryption based on metasurfaces and liquid crystals (LCs) has been proposed to encrypt the information by manipulating the wavelength, polarization, etc. However, the security cannot be fully guaranteed since the requirements of decoding methods for these schemes are generally not very strict and vulnerable for exhaustive attack. Furthermore, any part of the hologram stolen may lead to the disclosure of the hidden information regardless of the generation mode of phase delay or the selection of media material, so the security needs to be further improved. Here, inspired by Tiger Amulet, embodying the encryption consciousness of ancient China, we propose a simple but effective encryption method and design a "four-in-one" hologram based on photopatterned LCs. Specifically, the most important encrypted image can only be displayed when the four LC holograms in the same group are spliced into a whole according to the designed order. On the contrary, the camouflage information would be displayed if the holograms are placed in the optical path separately or spliced in wrong order. It is even more interesting that with the LC directors tilted with applied external voltages, the holographic efficiency of the LC hologram will change accordingly. This sets further demanding requirement on the decryption condition and thus increases the encryption security. With the advantages of simple design, high security, and low crosstalk, our encryption scheme has great potential in the fields of information hiding and image encryption.

摘要

由于相位的精确和连续调控,基于超表面和液晶(LC)的全息加密被提出通过操纵波长、偏振等来加密信息。然而,由于这些方案的解码方法要求通常不是很严格,容易受到穷举攻击,所以安全性不能得到充分保证。此外,无论相位延迟的产生方式或介质材料的选择如何,全息图的任何部分被盗都可能导致隐藏信息的泄露,因此安全性需要进一步提高。在此,受体现中国古代加密意识的虎符启发,我们提出了一种简单而有效的加密方法,并基于光图案化液晶设计了一种“四合一”全息图。具体而言,只有当同一组中的四个液晶全息图按照设计顺序拼接成一个整体时,最重要的加密图像才能显示出来。相反,如果全息图单独放置在光路中或以错误顺序拼接,伪装信息就会显示出来。更有趣的是,随着液晶指向矢在外加电压作用下倾斜,液晶全息图的全息效率会相应改变。这对解密条件提出了进一步的苛刻要求,从而提高了加密安全性。我们的加密方案具有设计简单、安全性高和串扰低的优点,在信息隐藏和图像加密领域具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40fb/11501589/4f735e42272a/j_nanoph-2023-0040_fig_001.jpg

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