Counterfactual attack on counterfactual quantum key distribution

Sheng Zhang, Jian Wnang, Chaojing Tang
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引用次数: 14

Abstract

It is interesting that counterfactual quantum cryptography protocols allow two remotely separated parties to share a secret key without transmitting any signal particles. Generally, these protocols, expected to provide security advantages, base their security on a translated no-cloning theorem. Therefore, they potentially exhibit unconditional security in theory. In this letter, we propose a new Trojan horse attack, by which an eavesdropper Eve can gain full information about the key without being noticed, to real implementations of a counterfactual quantum cryptography system. Most importantly, the presented attack is available even if the system has negligible imperfections. Therefore, it shows that the present realization of counterfactual quantum key distribution is vulnerable.
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反事实量子密钥分发的反事实攻击
有趣的是,反事实量子加密协议允许两个远程分离的方在不传输任何信号粒子的情况下共享密钥。通常,这些协议期望提供安全优势,它们的安全性基于转换后的不可克隆定理。因此,理论上他们可能会表现出无条件的安全感。在这封信中,我们提出了一种新的特洛伊木马攻击,通过这种攻击,窃听者Eve可以在不被发现的情况下获得有关密钥的全部信息,从而真正实现反事实量子密码系统。最重要的是,即使系统有可以忽略不计的缺陷,所提出的攻击也是可用的。因此,这表明目前实现的反事实量子密钥分发是脆弱的。
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