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Enhancing security of incoherent optical cryptosystem by a simple position-multiplexing technique and ultra-broadband illumination

机译:通过简单的位置复用技术和超宽带照明增强非相干光密码系统的安全性

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摘要

A position-multiplexing technique with ultra-broadband illumination is proposed to enhance the information security of an incoherent optical cryptosystem. This simplified optical encryption system only contains one diffuser acting as the random phase mask (RPM). Incoherent light coming from a plaintext passes through this nature RPM and generates the corresponding ciphertext on a camera. The proposed system effectively reduces problems of critical alignment sensitivity and coherent noise that are found in the coherent illumination. Here, the use of ultra-broadband illumination has the advantage of reducing the speckle contrast that makes the ciphertext more complex. Reduction of the ciphertext size further increases the strength of the ciphering. Using the spatial decorrelation of the speckle pattern we have demonstrated a position multiplexed based cryptosystem, where the ciphertext is the superposition of uniquely encrypted texts from various spatial positions. These unique spatial keys are utilized to decrypt the plaintext located at different spatial positions, and a complete decrypted text can be concatenated with high fidelity. Benefiting from position-multiplexing, the information of interest is scrambled together by a truly random method in a smaller ciphertext. A high performance security for an optical cryptosystem has been achieved in a simple setup with a ground glass diffuser as a nature RPM, the broadband incoherent illumination and small position-multiplexed ciphertext.
机译:为了提高非相干光密码系统的信息安全性,提出了一种具有超宽带照明的位置复用技术。这种简化的光学加密系统仅包含一个用作随机相位掩码(RPM)的漫射器。来自明文的非相干光穿过该自然RPM,并在相机上生成相应的密文。所提出的系统有效地减少了在相干照明中发现的临界对准灵敏度和相干噪声的问题。在此,超宽带照明的使用具有减少斑点对比度的优点,从而使密文更加复杂。密文大小的减小进一步增加了密文的强度。使用斑点图案的空间去相关,我们展示了基于位置多路复用的密码系统,其中密文是来自各个空间位置的唯一加密文本的叠加。这些独特的空间密钥用于解密位于不同空间位置的纯文本,并且可以以高保真度连接完整的解密文本。受益于位置复用,感兴趣的信息通过真正的随机方法在较小的密文中一起加扰。通过使用作为自然RPM的毛玻璃漫射器,宽带非相干照明和较小的位置复用密文,可以在简单的设置中实现光学密码系统的高性能安全性。

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