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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Passive Faraday-mirror attack in a practical two-way quantum-key-distribution system
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Passive Faraday-mirror attack in a practical two-way quantum-key-distribution system

机译:实用的双向量子密钥分配系统中的被动法拉第镜攻击

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The Faraday mirror (FM) plays a very important role in maintaining the stability of two-way plug-and-play quantum key distribution (QKD) systems. However, the practical FM is imperfect, which will not only introduce an additional quantum bit error rate (QBER) but also leave a loophole for Eve to spy the secret key. In this paper we propose a passive Faraday mirror attack in two-way QKD system based on the imperfection of FM. Our analysis shows that if the FM is imperfect, the dimension of Hilbert space spanned by the four states sent by Alice is three instead of two. Thus Eve can distinguish these states with a set of Positive Operator Valued Measure (POVM) operators belonging to three-dimension space, which will reduce the QBER induced by her attack. Furthermore, a relationship between the degree of the imperfection of FM and the transmittance of the practical QKD system is obtained. The results show that the probability that Eve loads her attack successfully depends on the degree of the imperfection of FM rapidly, but the QBER induced by Eve's attack changes slightly with the degree of the FM imperfection.
机译:法拉第镜(FM)在维持双向即插即用量子密钥分发(QKD)系统的稳定性方面起着非常重要的作用。但是,实际的FM并不完美,这不仅会引入额外的量子误码率(QBER),而且还会给Eve监视间谍密钥留下漏洞。在本文中,我们基于FM的缺陷提出了一种双向QKD系统中的被动法拉第镜攻击。我们的分析表明,如果FM不完美,则Alice发送的四个状态所跨越的希尔伯特空间的维数将是3而不是2。因此,Eve可以使用属于三维空间的一组正算子值度量(POVM)算子来区分这些状态,这将减少由其攻击引起的QBER。此外,获得了FM的缺陷程度与实际QKD系统的透射率之间的关系。结果表明,Eve成功进行攻击的概率取决于FM的缺陷程度,但是Eve的攻击引起的QBER随FM缺陷的程度而略有变化。

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