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基于时间纠缠的量子区块链的不安全性。

Insecurity of Quantum Blockchains Based on Entanglement in Time.

作者信息

Zawadzki Piotr

机构信息

Department of Telecommunications and Teleinformatics, Silesian University of Technology, Akademicka 16, 44-100 Gliwice, Poland.

出版信息

Entropy (Basel). 2023 Sep 16;25(9):1344. doi: 10.3390/e25091344.

Abstract

In this study, the security implications of utilizing the concept of entanglement in time in the quantum representation of a blockchain data structure are investigated. The analysis reveals that the fundamental idea underlying this representation relies on an uncertain interpretation of experimental results. A different perspective is provided by adopting the Copenhagen interpretation, which explains the observed correlations in the experiment without invoking the concept of entanglement in time. According to this interpretation, the qubits responsible for these correlations are not entangled, posing a challenge to the security foundation of the data structure. The study incorporates theoretical analysis, numerical simulations, and experiments using real quantum hardware. By employing a dedicated circuit for detecting genuine entanglement, the existence of entanglement in the process of generating a quantum blockchain is conclusively excluded.

摘要

在本研究中,我们探讨了在区块链数据结构的量子表示中利用时间纠缠概念所带来的安全影响。分析表明,这种表示背后的基本思想依赖于对实验结果的不确定解释。采用哥本哈根解释提供了一个不同的视角,它在不引入时间纠缠概念的情况下解释了实验中观察到的相关性。根据这种解释,负责这些相关性的量子比特并未纠缠,这对数据结构的安全基础构成了挑战。该研究纳入了理论分析、数值模拟以及使用真实量子硬件进行的实验。通过使用一个专门用于检测真正纠缠的电路,最终排除了在生成量子区块链过程中存在纠缠的可能性。

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