Promoting a Hybrid Cryptosystem System’s Security based on Fresnel lens and RSA Algorithm

Peng Yang, Weishun Xue, Chenqi Fan, Xiaojian Xue
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Abstract

with the growing concerns of the current network security, development of hybrid cryptosystem based on the combination of optical symmetric cryptography and public key cryptography has aroused considerable research interest. In optical symmetry system, a new method for encrypting optical information using Fresnel lenses is proposed. The symmetry system’s keys include the focal length (f) and propagation wavelength ($\lambda$). Then, in public key cryptography, the key ($\lambda$,J) is encrypted by the RSA algorithm. Finally, we have implemented and result have been obtained using 12-level digital Fresnel lens by COMSOL Multiphysics to study of how the optical image deciphered the information using encryption keys. In addition, the main challenges and future prospects for the further development of hybrid cryptosystem system are discussed.
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基于菲涅耳透镜和RSA算法的混合密码系统安全性提升
随着人们对当前网络安全问题的日益关注,基于光学对称密码和公钥密码相结合的混合密码系统的发展引起了人们极大的研究兴趣。在光学对称系统中,提出了一种利用菲涅耳透镜对光学信息进行加密的新方法。对称系统的关键字包括焦距(f)和传播波长($\lambda$)。然后,在公钥加密中,密钥($\lambda$,J)由RSA算法加密。最后,我们利用COMSOL Multiphysics软件实现了12级数字菲涅耳透镜,并获得了结果,研究了光学图像如何使用加密密钥解密信息。此外,还讨论了混合密码系统进一步发展面临的主要挑战和未来前景。
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