Maluenda David, Carnicer Artur, Martínez-Herrero Rosario, Juvells Ignasi, Javidi Bahram
Opt Express. 2015 Jan 26;23(2):655-66. doi: 10.1364/OE.23.000655.
We present a polarimetric-based optical encoder for image encryption and verification. A system for generating random polarized vector keys based on a Mach-Zehnder configuration combined with translucent liquid crystal displays in each path of the interferometer is developed. Polarization information of the encrypted signal is retrieved by taking advantage of the information provided by the Stokes parameters. Moreover, photon-counting model is used in the encryption process which provides data sparseness and nonlinear transformation to enhance security. An authorized user with access to the polarization keys and the optical design variables can retrieve and validate the photon-counting plain-text. Optical experimental results demonstrate the feasibility of the encryption method.
我们提出了一种用于图像加密和验证的基于偏振的光学编码器。开发了一种基于马赫-曾德尔配置并在干涉仪的每条路径中结合半透明液晶显示器来生成随机偏振矢量密钥的系统。通过利用斯托克斯参数提供的信息来检索加密信号的偏振信息。此外,在加密过程中使用光子计数模型,该模型提供数据稀疏性和非线性变换以增强安全性。有权访问偏振密钥和光学设计变量的授权用户可以检索并验证光子计数明文。光学实验结果证明了该加密方法的可行性。