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Security enhancement of color image cryptosystem by optical interference principle and spiral phase encoding

机译:利用光学干涉原理和螺旋相位编码增强彩色图像密码系统的安全性

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摘要

A color information cryptosystem based on optical interference principle and spiral phase encoding is proposed. A spiral phase mask (SPM) is used instead of a conventional random phase mask because it contains multiple storing keys in a single phase mask. The color image is decomposed into RGB channels. The decomposed three RGB channels can avoid the interference of crosstalks efficiently. Each channel is encoded into an SPM and analytically generates two spiral phase-only masks (SPOMs). The two SPOMs are then phase-truncated to get two encrypted images and amplitude-truncated to produce two asymmetric phase keys. The two SPOMs and the two asymmetric phase keys can be allocated to four different authorized users. The order, the wavelength, the focal length, and the radius are construction parameters of the SPM (or third SPOM) that can also be assigned to the four other different authorized users. The proposed technique can be used for a highly secure verification system, so an unauthorized user cannot retrieve the original image if only one key out of eight keys is missing. The proposed method does not require iterative encoding or postprocessing of SPOMs to overcome inherent silhouette problems, and its optical setup alleviates stringent alignment of SOPMs. The validity and feasibility of the proposed method are supported by numerical simulation results.
机译:提出了一种基于光干涉原理和螺旋相位编码的颜色信息密码系统。使用螺旋相位掩码(SPM)代替常规随机相位掩码,因为它在单个相位掩码中包含多个存储密钥。彩色图像被分解为RGB通道。分解后的三个RGB通道可以有效避免串扰。每个通道都被编码为SPM,并解析生成两个螺旋纯相位掩码(SPOM)。然后将两个SPOM截断以获得两个加密图像,并截断振幅以产生两个非对称相位密钥。可以将两个SPOM和两个非对称相位密钥分配给四个不同的授权用户。顺序,波长,焦距和半径是SPM(或第三SPOM)的构造参数,也可以分配给其他四个不同的授权用户。所提出的技术可以用于高度安全的验证系统,因此,如果缺少八个密钥中的一个密钥,则未经授权的用户将无法检索原始图像。所提出的方法不需要对SPOM进行迭代编码或后处理来克服固有的轮廓问题,并且其光学设置可以减轻SOPM的严格对准。数值仿真结果证明了该方法的有效性和可行性。

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