利用量子纠缠进行基于软件的远程存储器验证

IF 2.2 3区 物理与天体物理 Q1 PHYSICS, MATHEMATICAL
Jesse Laeuchli, Rolando Trujillo-Rasua
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引用次数: 0

摘要

基于软件的远程内存验证是一种无需依赖安全硬件就能确定远程设备状态的方法。在经典计算设备中,这种方法很容易受到代理和验证攻击,因为受感染的设备无法防止其加密秘密泄露。在本文中,我们展示了如何通过利用量子效应来缓解这些攻击,同时又不超出基于软件的方法的范畴。特别是,我们利用了纠缠和攻击者无法克隆量子比特的特点。我们提出的协议是轻量级的,可通过近期量子计算技术实现。由此产生的协议具有抵御两个不诚实设备之间串通的独特功能,其中一个设备拥有无限制的计算资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Software-based remote memory attestation using quantum entanglement

Software-based remote memory attestation using quantum entanglement

Software-based remote memory attestation is a method for determining the state of a remote device without relying on secure hardware. In classical computing devices, the method is vulnerable to proxy and authentication attacks, because an infected device has no means of preventing the leak of its cryptographic secrets. In this paper, we demonstrate how these attacks can be mitigated by making use of quantum effects, while remaining within the class of software-based methods. In particular, we make use of entanglement and the inability of an attacker to clone qubits. Our proposed protocol is lightweight and can be implemented by near-term Quantum Computing techniques. The resulting protocol has the unique feature of resisting collusion between two dishonest devices, one of which has unbounded computational resources.

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来源期刊
Quantum Information Processing
Quantum Information Processing 物理-物理:数学物理
CiteScore
4.10
自引率
20.00%
发文量
337
审稿时长
4.5 months
期刊介绍: Quantum Information Processing is a high-impact, international journal publishing cutting-edge experimental and theoretical research in all areas of Quantum Information Science. Topics of interest include quantum cryptography and communications, entanglement and discord, quantum algorithms, quantum error correction and fault tolerance, quantum computer science, quantum imaging and sensing, and experimental platforms for quantum information. Quantum Information Processing supports and inspires research by providing a comprehensive peer review process, and broadcasting high quality results in a range of formats. These include original papers, letters, broadly focused perspectives, comprehensive review articles, book reviews, and special topical issues. The journal is particularly interested in papers detailing and demonstrating quantum information protocols for cryptography, communications, computation, and sensing.
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