Cryptography in the Quantum Era

E. Lella, Alberto Gatto, Andrea Pazienza, Diego Romano, Pietro Noviello, Felice Vitulano, G. Schmid
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引用次数: 1

Abstract

Recent advances in quantum computing and quantum information theory represent a severe threat to the current state of the art of data protection. In this context, new quantum-safe techniques have emerged in recent decades, which fall into post-quantum and unconditionally secure cryptographic schemes. The firsts rely on computational problems supposed to be hard also for quantum computers. In contrast, the seconds do not depend on the difficulty of a computational problem and are therefore immune to quantum power. In particular, unconditionally secure techniques include Quantum Key Distribution (QKD) protocols for transmitting secret keys thanks to the quantum properties of light. In this work, we discuss QKD networks and post-quantum algorithms, considering their opportunities and limitations and showing that reconciliation between these two directions of cryptography is feasible and necessary for the quantum era.This work is part of the activities of the PON project “Development of quantum systems and technologies for IT security in communication networks” (QUANCOM) which aims to the realization of a metropolitan quantum communication network through the collaboration between universities, research centers and companies operating in the communication market area.
量子时代的密码学
量子计算和量子信息理论的最新进展对当前的数据保护技术构成了严重威胁。在这种背景下,近几十年来出现了新的量子安全技术,它们属于后量子和无条件安全加密方案。第一种方法依赖于计算问题,这些问题对于量子计算机来说也很难。相比之下,秒不依赖于计算问题的难度,因此不受量子功率的影响。特别是,无条件安全技术包括利用光的量子特性传输秘密密钥的量子密钥分发(QKD)协议。在这项工作中,我们讨论了QKD网络和后量子算法,考虑了它们的机会和局限性,并表明这两个方向的密码学之间的协调在量子时代是可行和必要的。这项工作是PON项目“开发量子系统和通信网络IT安全技术”(QUANCOM)活动的一部分,该项目旨在通过在通信市场领域运营的大学、研究中心和公司之间的合作,实现城域量子通信网络。
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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