后量子密码学(PQC) -概述:(特邀论文)

M. Kumar, P. Pattnaik
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引用次数: 11

摘要

我们讨论了NIST正在考虑的用于密钥建立的后量子加密算法。其中三个,晶体- Kyber,经典McEliece和基于超奇异等源的密钥封装(SIKE),是NIST在第一轮评估中接受的几乎所有69个候选算法的安全性基础上的三类难题的代表。对于每个算法,我们简要地描述了算法加密强度背后的难题,计算背后的代数结构,即群或有限域,在这些算法中执行的基本计算,算法本身,以及在传统多核处理器上有效实现基本算法的性能考虑。对于Crystals- Kyber和SIKE,我们将讨论提高它们在多核处理器上性能的潜在解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Post Quantum Cryptography(PQC) - An overview: (Invited Paper)
We discuss the Post Quantum Cryptography algorithms for key establishment under consideration by NIST for standardization. Three of these, Crystals- Kyber, Classic McEliece and Supersingular Isogeny based Key Encapsulation (SIKE), are representatives of the three classes of hard problems underlying the security of almost all 69 candidate algorithms accepted by NIST for consideration in round 1 of evaluation. For each algorithm, we briefly describe the hard problem underlying the algorithm's cryptographic strength, the algebraic structure i.e., the groups or finite fields, underlying the computations, the basic computations performed in these algorithms, the algorithm itself, and the performance considerations for efficient implementation of the basic algorithm on conventional many-core processors. For Crystals- Kyber and SIKE, we will discuss the potential solutions to improve their performance on many-core processors.
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