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Four-Channel Imaging Based on Reconfigurable Metasurfaces: Hyperchaotic Encryption Under Physical Protection

作者:Yifan Li, Yuhan Yang, Qiegen Liu, Shuyuan Xiao, Tingting Liu · 发表于:Journal of Lightwave Technology · 年份:2025 · DOI:10.1109/jlt.2025.3639549 · 被引用次数:6 · 研究领域:Metamaterials and Metasurfaces Applications、Advanced Wireless Communication Technologies、Orbital Angular Momentum in Optics

Metasurfaces facilitate high-capacity optical information integration by simultaneously supporting near-field nanoprinting and far-field holography on a single platform. However, conventional multi-channel designs face critical security vulnerabilities for sensitive information due to insufficient encryption mechanisms. In this work, we propose a four-channel phase-change metasurface featuring algorithm-physical co-security—a dual-protection framework combining intrinsic metasurface physical security with chaotic encryption. Our polarization-multiplexed metasurface generates four optical imaging channels through meta-atom design, including two far-field holograms and two near-field patterns. To enhance system security, we apply Chen hyperchaotic encryption combined with the Logistic map and DNA encoding to convert near-field information into secure QR codes; far-field holograms are retained to demonstrate the metasurface's information capacity and for attack detection. The phase-change metasurface further provides physical-layer security through its reconfigurable capability, dynamically controlling imaging channels via reversible crystalline-to-amorphous state transitions. This reconfigurability enhances anti-counterfeiting and reliability while demonstrating the physical security mechanism. The proposed metasurface achieves high-fidelity imaging, robust anti-attack performance, and independent channel control. This integrated approach pioneers a secure paradigm for high-den...