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Asymmetric information hiding and noise-free recovery based on rotating analyzer ellipsometry and quick-response code

机译:基于旋转分析仪椭偏仪和快速响应代码的非对称信息隐藏和无噪声恢复

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摘要

We report an asymmetric optical information hiding method based on a rotating analyzer ellipsometry technique. This asymmetric hiding architecture not only avoids the interception of keys during transmission or distribution but also makes the cyphertext more inconspicuous for attackers. A new kind of one-way optical trapdoor function is constructed based on the fact that the state of polarization (SOP) of elliptical polarized light cannot be recovered with only the knowledge of intensity captured after passing through a linear polarizer. Meanwhile, the SOP of a polarization ellipse could be calculated by rotating the polarizer to record two scenes of intensity after it. Introduction of a quick response code as a container leads to noise-free recovery for original information and enhances practicality of the proposed cryptosystem with versatile key sensitivity and fault tolerance capability. Numerical simulation results that support theoretical analysis are presented. Analysis on the relationship between hiding effect or quality of decryption and parameters of the algorithm also is provided.
机译:我们报告基于旋转分析仪椭偏技术的不对称光学信息隐藏方法。这种非对称的隐藏体系结构不仅避免了在传输或分发过程中密钥的拦截,而且使密文对于攻击者而言更加不明显。基于以下事实构造了一种新型的单向光学陷门功能:椭圆偏振光的偏振状态(SOP)仅通过线性偏振器后就无法获得,因此无法恢复。同时,可以通过旋转偏振器以记录偏振椭圆的两个场景来计算偏振椭圆的SOP。引入快速响应代码作为容器可实现原始信息的无噪声恢复,并通过通用的密钥敏感性和容错能力增强了所提出密码系统的实用性。给出了支持理论分析的数值模拟结果。还提供了对隐藏效果或解密质量与算法参数之间关系的分析。

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