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Asymmetric public key cryptosystem using digital holographic encryption method

机译:使用数字全息加密方法的非对称公钥密码系统

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A novel asymmetric public key cryptographic algorithm is proposed by modifying the conventional RSA public key protocol, which can be optically implemented by using the phase-shifting digital holography. The proposed method involves a two-key encryption scheme so that it provides stronger security than the one-key encryption method. Optically, two unknown randomly generated numbers are changed to digital holograms which are used as public keys for asymmetric cryptography. The generated public keys and cipher texts by using them are Fourier transformed digital holograms with 256 gray level quantized intensities which are recorded on CCDs. The original plain text can be decrypted only with correct pairs of public-private keys and the holographic encryption-decryption keys in the proposed algorithm. The proposed optical schematic has an advantage of producing an enhanced asymmetric public key cryptosystem compared to the conventional RSA cryptosystem. The results of computer simulations verify that the proposed method shows the feasibility of application to an asymmetric public key cryptosystem with high security strength.
机译:通过修改传统的RSA公钥协议,提出了一种新的非对称公钥加密算法,可以通过使用相移数字全息术来光学实现。所提出的方法涉及双键加密方案,使其提供比单键加密方法更强的安全性。光学上,两个未知的随机生成的数字将改变为数字全息图,该数字全息图用作非对称密码术的公钥。使用它们的生成的公钥和密文是傅里叶变换的数字全息图,具有256个灰度级量化强度,记录在CCD上。原始纯文本只能用正确的公共私钥和所提出的算法中的全息加密 - 解密密钥进行解密。所提出的光学原理图具有与传统RSA密码系统相比产生增强的不对称公钥密码系统的优点。计算机模拟的结果验证了该方法显示应用于具有高安全强度的非对称公钥密码系统的可行性。

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