Authenticity, Integrity, and Replay Protection in Quantum Data Communications and Networking

M. Barbeau, E. Kranakis, Nicolas Perez
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引用次数: 3

Abstract

Quantum data communications and networking involve classical hardware and software. Quantum storage is sensitive to environmental disturbances that may have malicious origins. Teleportation and entanglement swapping, two building blocks for the future quantum Internet, rely on secure classical bit communications. When lack of authenticity, integrity, and replay protection may have a high impact, quantum data communications are at risk and need to be protected. Building upon quantum cryptography and random generation of quantum operators, we propose a solution to protect the authenticity, integrity, and replay of quantum data communications. Our solution includes a classical data interface to quantum data cryptography. We describe how classical keying material can be mapped to quantum operators. This enables classical key management techniques for secure quantum data communications.
量子数据通信和网络中的真实性、完整性和重放保护
量子数据通信和网络涉及传统的硬件和软件。量子存储对可能有恶意来源的环境干扰很敏感。隐形传态和纠缠交换是未来量子互联网的两个组成部分,它们依赖于安全的经典比特通信。当缺乏真实性、完整性和重播保护可能会产生很大影响时,量子数据通信处于危险之中,需要受到保护。基于量子密码学和量子算子的随机生成,我们提出了一种保护量子数据通信的真实性、完整性和重播的解决方案。我们的解决方案包括量子数据加密的经典数据接口。我们描述了如何将经典的键控材料映射到量子算子。这使得经典的密钥管理技术能够用于安全的量子数据通信。
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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