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在WGM随机混合微腔中实现的彩色图像双混沌加密。

Dual chaos encryption for color images enabled in a WGM-random hybrid microcavity.

作者信息

Zhai Tianrui, Yan Jiuhu, Shi Xiaoyu, Ruan Jun, Tong Junhua, Liang Ningning

机构信息

College of Physics and Optoelectronics, Faculty of Science, Beijing University of Technology, Beijing 100124, China.

College of Mathematics and physics, Beijing University of Chemical Technology, Beijing 100029, China.

出版信息

Nanoscale. 2022 Aug 11;14(31):11252-11260. doi: 10.1039/d2nr02557d.

Abstract

Chaotic cryptography as an important means for digital image encryption has become a great cryptographic project in the current information age. As a novel microcavity laser, a random laser (RL) has a natural advantage for a chaotic system, relying on its spectral randomness. Nevertheless, this encrypted image generally suffers from outline exposition when an unsuitable key from a single RL spectrum is employed. Herein, to realize reliable dual chaotic encryption, an internally integrated hybrid microcavity in random and whispering-gallery-mode (WGM) is reported. Within this coupled microcavity, the rhodamine-6G-doped inner-wall of the fiber serves as the gain medium and the optical cavities for WGM lasing; an RL mode is enabled by scattered particles and the gain medium (Rh6G). Interestingly, the smooth inner wall of the fiber with a high-quality () factor and tight optical confinement make WGM lasing occur earlier than RL. What is more, a fast energy transfer process from the WGM laser to Ag nanoparticles and the resultant localized surface plasmon resonance effects from Ag NPs to RL jointly promote the output of the random laser. As a result, a free transformation from the WGM laser to RL is successfully modulated by varying the pump power alone, thus providing two initial values for dual chaos image encryption. This work provides an in-depth understanding of a WGM-random inner-coupled cavity and promotes the application of a hybrid microcavity in the field of information security.

摘要

混沌密码学作为数字图像加密的一种重要手段,已成为当前信息时代一项重大的密码学工程。随机激光(RL)作为一种新型微腔激光器,凭借其光谱随机性,在混沌系统方面具有天然优势。然而,当使用来自单个RL光谱的不合适密钥时,这种加密图像通常会出现轮廓暴露问题。在此,为实现可靠的双混沌加密,报道了一种内部集成的随机与回音壁模式(WGM)混合微腔。在这个耦合微腔中,掺杂罗丹明-6G的光纤内壁作为增益介质和WGM激光的光学腔;RL模式由散射粒子和增益介质(Rh6G)激发。有趣的是,具有高品质()因子和紧密光学限制的光纤光滑内壁使WGM激光比RL更早出现。此外,从WGM激光到银纳米颗粒的快速能量转移过程以及银纳米颗粒对RL产生的局部表面等离子体共振效应共同促进了随机激光的输出。结果,仅通过改变泵浦功率就成功调制了从WGM激光到RL的自由转换,从而为双混沌图像加密提供了两个初始值。这项工作深入理解了WGM - 随机内耦合腔,并推动了混合微腔在信息安全领域的应用。

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