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Isogeny-Based Cryptography: A Promising Post-Quantum Technique

机译:基于等基因的密码术:一种有前途的后量子技术。

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摘要

Recent advances in quantum computing have made existing public key cryptosystems vulnerable to enormous security threats. Therefore, numerous efforts have been exploring post-quantum cryptographic techniques to address the emergence of quantum computing. We focus on one promising post-quantum cryptography known as "isogeny-based cryptography," first by reviewing some concepts of the elliptic curve isogeny, and then, we present three major methods for constructing isogeny-based difficult problems. Then, we present some existing isogeny-based cryptographic primitives, such as signature and key exchange, and analyze their advantages and disadvantages. Finally, we discuss a few major challenges of isogeny research that, we hope, will attract more attention to isogeny-based cryptography.
机译:量子计算的最新进展使现有的公钥密码系统容易受到巨大的安全威胁。因此,已经进行了许多努力来探索后量子密码技术以解决量子计算的出现。我们首先关注一种有前途的后量子密码学,即“基于等位基因的密码学”,首先回顾一下椭圆曲线等值学的一些概念,然后介绍构建基于等位基因的难题的三种主要方法。然后,我们提出了一些现有的基于异构的加密原语,例如签名和密钥交换,并分析了它们的优缺点。最后,我们讨论了同构研究的一些主要挑战,希望这些新挑战将吸引更多关注基于同构的密码学。

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