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首页> 外文期刊>Journal of optics, A. Pure and applied optics: journal of the European Optical Society >Vulnerability to known-plaintext attack of optical encryption schemes based on two fractional Fourier transform order keys and double random phase keys
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Vulnerability to known-plaintext attack of optical encryption schemes based on two fractional Fourier transform order keys and double random phase keys

机译:基于两个分数阶傅立叶变换顺序密钥和双随机相位密钥的光学加密方案的已知明文攻击的漏洞

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摘要

From the perspective of optical information security, we demonstrate that conventional phase retrieval algorithms, such as the Gerchberg-Saxton algorithm, can be still valid when extended from the Fourier transform domain into the fractional Fourier transform (FRFT) domain. Based on this extension, we propose a method of known-plaintext attack (KPA) on double random phase encoding in the fractional Fourier transform domain (DRPE-FRFT). With this attack, an opponent can access two encryption phase keys with the help of the phase retrieval algorithm in the FRFT domain, and meanwhile obtain the two FRFT order keys by using an exhaustive search. This indicates that the optical encryption scheme based on the DRPE-FRFT scheme is vulnerable to KPA due to the nature of the linearity of FRFT. The validity of this attack is verified by numerical simulations.
机译:从光学信息安全的角度,我们证明了当从傅立叶变换域扩展到分数傅立叶变换(FRFT)域时,诸如Gerchberg-Saxton算法之类的常规相位检索算法仍然有效。基于此扩展,我们提出了一种在分数阶傅立叶变换域(DRPE-FRFT)中对双随机相位编码的已知明文攻击(KPA)方法。通过这种攻击,对手可以借助FRFT域中的相位检索算法来访问两个加密相位密钥,并同时通过穷举搜索获得两个FRFT顺序密钥。这表明由于FRFT线性的性质,基于DRPE-FRFT方案的光加密方案容易受到KPA的攻击。数值模拟验证了这种攻击的有效性。

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