Deploying hybrid quantum-secured infrastructure for applications: When quantum and post-quantum can work together

A. Fedorov
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Abstract

Most currently used cryptographic tools for protecting data are based on certain computational assumptions, which makes them vulnerable with respect to technological and algorithmic developments, such as quantum computing. One existing option to counter this potential threat is quantum key distribution, whose security is based on the laws of quantum physics. Quantum key distribution is secure against unforeseen technological developments. A second approach is post-quantum cryptography, which is a set of cryptographic primitives that are believed to be secure even against attacks with both classical and quantum computing technologies. From this perspective, this study reviews recent progress in the deployment of the quantum-secured infrastructure based on quantum key distribution, post-quantum cryptography, and their combinations. Various directions in the further development of the full-stack quantum-secured infrastructure are also indicated. Distributed applications, such as blockchains and distributed ledgers, are also discussed.
为应用程序部署混合量子安全基础设施:当量子和后量子可以一起工作时
目前大多数用于保护数据的加密工具都是基于某些计算假设,这使得它们在技术和算法发展(如量子计算)方面容易受到攻击。对付这种潜在威胁的一个现有选择是量子密钥分发,其安全性基于量子物理定律。量子密钥分发是安全的,不受不可预见的技术发展的影响。第二种方法是后量子密码学,这是一组加密原语,即使面对经典和量子计算技术的攻击,也被认为是安全的。从这个角度出发,本研究回顾了基于量子密钥分发、后量子加密及其组合的量子安全基础设施部署的最新进展。指出了全栈量子安全基础设施进一步发展的各种方向。分布式应用程序,如区块链和分布式账本,也进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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