使用量子PUF的客户端-服务器识别协议

Mina Doosti, N. Kumar, M. Delavar, E. Kashefi
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引用次数: 13

摘要

最近,在实现量子互联网方面取得了重大进展,使广泛的经典棘手应用成为可能。这些应用程序(如委托量子计算)需要在低资源方和高资源方之间运行安全标识协议,以提供安全通信。在这项工作中,我们提出了两种基于新兴硬件安全解决方案的识别协议,量子物理不可克隆函数(qpuf)。第一个协议允许低资源方向高资源方证明其身份,在第二个协议中,反之亦然。与现有的基于量子读出puf的识别协议不同,该协议依赖于针对特定攻击系列的安全性,我们的协议提供了可证明的指数安全性,可针对任何具有资源高效方的量子多项式时间对手。我们从双方所需的量子存储器和计算能力等资源以及它们之间的通信开销等方面对两种协议进行了全面的比较。
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Client-server Identification Protocols with Quantum PUF
Recently, major progress has been made towards the realisation of quantum internet to enable a broad range of classically intractable applications. These applications such as delegated quantum computation require running a secure identification protocol between a low-resource and a high-resource party to provide secure communication. In this work, we propose two identification protocols based on the emerging hardware-secure solutions, the quantum Physical Unclonable Functions (qPUFs). The first protocol allows a low-resource party to prove its identity to a high-resource party and in the second protocol, it is vice versa. Unlike existing identification protocols based on Quantum Read-out PUFs that rely on the security against a specific family of attacks, our protocols provide provable exponential security against any Quantum Polynomial-Time adversary with resource-efficient parties. We provide a comprehensive comparison between the two proposed protocols in terms of resources such as quantum memory and computing ability required in both parties as well as the communication overhead between them.
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