Yuan Yueyi, Zhou Wenjie, Zhang He, Wang Yuxiang, Zong Hua, Wang Yue, Dong Yongkang, Burokur Shah Nawaz, Zhang Kuang
Harbin Institute of Technology No. 92 Xidazhi Street Nangang Distinct Harbin Heilongjiang Province 150001 China.
Xi'an University of Technology No. 5 Jinhua South Road Beilin District Xi'an Shaanxi Province 710048 China.
Small Sci. 2024 Jun 21;4(8):2400138. doi: 10.1002/smsc.202400138. eCollection 2024 Aug.
Metasurface-based holography provides tremendous advances in multi-dimensional detection, super-resolution imaging, and cryptography applications. Current mainstream researches on holographic metasurface are primarily focused on exploring degrees of freedom to enhance information multiplexing capability. Nevertheless, from the information security point of view, it is necessary to integrate existing available freedom resources, such as multi-polarization components, to enhance the security of holographic encryption. Herein, a full-polarimetric synthetization scheme is proposed for holographic displaying to develop a novel approach for information and imaging encryption. By exploiting chirality-assisted metasurface as the implementation platform, quadruplex circular polarization components are independently phase-modulated with separate holographic sub-imaging. For an intuitive demonstration, linear polarization is set as the encoded state to acquire the synthesized intensity image with "HIT" characters. Hence, the output holographic information in transmission field can be successfully distinguished with the valid polarization. Additionally, the sensitivity and robustness property of the synthesized holographic performance is experimentally evaluated against ergodic elliptical polarization states, where the optimal performance of working efficiency and signal-to-noise ratio only appear under the preset linear polarizations. These results effectively prove the feasibility of the polarization integration hologram, opening the door to novel solutions for future full-polarimetric encryption strategies.
基于超表面的全息术在多维检测、超分辨率成像和密码学应用方面取得了巨大进展。当前关于全息超表面的主流研究主要集中在探索自由度以增强信息复用能力。然而,从信息安全的角度来看,有必要整合现有的可用自由度资源,如多偏振分量,以增强全息加密的安全性。在此,提出了一种用于全息显示的全偏振合成方案,以开发一种信息和成像加密的新方法。通过利用手性辅助超表面作为实现平台,四重圆偏振分量通过单独的全息子成像进行独立的相位调制。为了直观演示,将线性偏振设置为编码状态,以获取带有“HIT”字符的合成强度图像。因此,传输场中的输出全息信息可以通过有效的偏振成功区分。此外,针对遍历椭圆偏振态对合成全息性能的灵敏度和鲁棒性进行了实验评估,其中工作效率和信噪比的最佳性能仅在预设的线性偏振下出现。这些结果有效地证明了偏振集成全息图的可行性,为未来全偏振加密策略的新解决方案打开了大门。