Physical unclonable functions have been shown a useful resource of randomness for implementing various cryptographic tasks including entity authentication. All of the related entity authentication protocols that have been discussed in the literature so far, either they are vulnerable to an emulation attack, or they are limited to short distances. Hence, quantum-safe remote entity authentication over large distances remains an open question. In the first part of this work we discuss the requirements that an entity authentication protocol has to offer in order to be useful for remote entity authentication in practice. Subsequently, we propose a protocol, which can operate over large distances, and offers security against both classical and quantum adversaries. The proposed protocol relies on standard techniques, it is fully compatible with the infrastructure of existing and future photonic networks, and it can operate in parallel with other quantum protocols, including QKD protocols.
翻译:实践证明,在各种加密任务(包括实体认证)中,物理上无法兼容的功能是随机执行各种加密任务(包括实体认证)的有用资源。迄今为止在文献中讨论过的所有相关实体认证协议,要么容易受到模拟攻击,要么局限于短距离。因此,远距离量子安全远程实体认证仍是一个未决问题。在这项工作的第一部分,我们讨论了实体认证协议必须满足的要求,以便在实践中对远程实体认证有用。随后,我们提出了一项协议,它可以在很远的距离内运作,并针对古典和量子对手提供安全保障。拟议的协议依赖于标准技术,与现有和未来光学网络的基础设施完全兼容,并且可以与其他量子协议平行运行,包括QKD协议。