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Optical image encryption using a jigsaw transform for silhouette removal in interference-based methods and decryption with a single spatial light modulator

机译:使用拼图变换的光学图像加密,用于基于干扰的方法中的轮廓去除,并使用单个空间光调制器进行解密

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摘要

Interference-based optical encryption schemes have an inherent silhouette problem due to the equipollent nature of the phase-only masks (POMs) generated using an analytical method. One of the earlier methods suggested that removing the problem by use of exchanging process between two masks increases the computational load. This shortcoming is overcome with a noniterative method using the jigsaw transformation (JT) in a single step, with improved security because the inverse JT of these masks, along with correct permutation keys that are necessary to decrypt the original image. The stringent alignment requirement of the POMs in two different arms during the experiment is removed with an alternative method using a single spatial light modulator. Experimental results are provided to demonstrate the decryption process with the proposed method.
机译:由于使用分析方法生成的仅相位掩码(POM)的等价性质,基于干扰的光学加密方案具有固有的轮廓问题。一种较早的方法表明,通过使用两个掩码之间的交换过程来消除问题会增加计算量。通过一步一步使用拼图变换(JT)的非迭代方法可以克服此缺点,并提高了安全性,因为这些掩码的反JT以及解密原始图像所需的正确置换密钥。使用另一种使用单个空间光调制器的方法,可以消除实验过程中两个不同分支中POM的严格对齐要求。实验结果证明了该方法的解密过程。

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