论文标题

直观的理解量子计算和量词后密码学

Intuitive Understanding of Quantum Computation and Post-Quantum Cryptography

论文作者

Nguyen, Quan Thoi Minh

论文摘要

量子后密码学是不可避免的。国家标准技术研究所(NIST)开始标准化抗量子的公钥密码学(又称量子后密码学)。原因是量子计算的投资正在开放,这对我们目前部署的加密算法构成了重大威胁。作为一名安全工程师,为了提前准备启示录,我一直在密切关注量子计算机和量子后加密的开发。没关系,我只是为研究这些迷人的科学领域而构成了借口。但是,至少对于像我这样的业余爱好者而言,他们很难理解。本文与您分享我的笔记,希望您对美丽而令人震惊的量子算法和量词后加密术有直观的了解。更新:多元签名方案彩虹被沃德·比伦斯(Ward Beullens)打破。 Wouter castryck和Thomas Depu损坏了杀代血质的差异 - 差异差异方案(SIDH)

Post-quantum cryptography is inevitable. National Institute of Standards and Technology (NIST) starts standardizing quantum-resistant public-key cryptography (aka post-quantum cryptography). The reason is that investment in quantum computing is blooming which poses significant threats to our currently deployed cryptographic algorithms. As a security engineer, to prepare for the apocalypse in advance, I've been watching the development of quantum computers and post-quantum cryptography closely. Never mind, I simply made up an excuse to study these fascinating scientific fields. However, they are extremely hard to understand, at least to an amateur like me. This article shares with you my notes with the hope that you will have an intuitive understanding of the beautiful and mind-blowing quantum algorithms and post-quantum cryptography. Update: Multivariate signature scheme Rainbow is broken by Ward Beullens. Supersingular Isogeny Diffie-Hellman protocol (SIDH) is broken by Wouter Castryck and Thomas Decru

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源