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连续变量量子数字签名的测量设备无关性分析

Measurement-Device Independency Analysis of Continuous-Variable Quantum Digital Signature.

作者信息

Shang Tao, Li Ke, Liu Jianwei

机构信息

School of Cyber Science and Technology, Beihang University, Beijing 100083, China.

School of Electronic and Information Engineering, Beihang University, Beijing 100083, China.

出版信息

Entropy (Basel). 2018 Apr 17;20(4):291. doi: 10.3390/e20040291.

Abstract

With the practical implementation of continuous-variable quantum cryptographic protocols, security problems resulting from measurement-device loopholes are being given increasing attention. At present, research on measurement-device independency analysis is limited in quantum key distribution protocols, while there exist different security problems for different protocols. Considering the importance of quantum digital signature in quantum cryptography, in this paper, we attempt to analyze the measurement-device independency of continuous-variable quantum digital signature, especially continuous-variable quantum homomorphic signature. Firstly, we calculate the upper bound of the error rate of a protocol. If it is negligible on condition that all measurement devices are untrusted, the protocol is deemed to be measurement-device-independent. Then, we simplify the calculation by using the characteristics of continuous variables and prove the measurement-device independency of the protocol according to the calculation result. In addition, the proposed analysis method can be extended to other quantum cryptographic protocols besides continuous-variable quantum homomorphic signature.

摘要

随着连续变量量子密码协议的实际应用,由测量设备漏洞导致的安全问题受到越来越多的关注。目前,量子密钥分发协议中关于测量设备独立性分析的研究有限,而且不同的协议存在不同的安全问题。考虑到量子数字签名在量子密码学中的重要性,本文试图分析连续变量量子数字签名,特别是连续变量量子同态签名的测量设备独立性。首先,我们计算协议错误率的上限。如果在所有测量设备都不可信的条件下该错误率可忽略不计,则该协议被认为是测量设备独立的。然后,我们利用连续变量的特性简化计算,并根据计算结果证明协议的测量设备独立性。此外,所提出的分析方法除了连续变量量子同态签名外,还可扩展到其他量子密码协议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3e9/7512809/87ae73ab5c65/entropy-20-00291-g001.jpg

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