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Attacking a practical quantum-key-distribution system with wavelength-dependent beam-splitter and multiwavelength sources

机译:用依赖于波长的分束器和多波长光源攻击实用的量子密钥分配系统

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摘要

It is well known that the unconditional security of quantum-key distribution (QKD) can be guaranteed by quantum mechanics. However, practical QKD systems have some imperfections, which can be controlled by the eavesdropper to attack the secret key. With current experimental technology, a realistic beam splitter, made by fused biconical technology, has a wavelength-dependent property. Based on this fatal security loophole, we propose a wavelength-dependent attacking protocol, which can be applied to all practical QKD systems with passive state modulation. Moreover, we experimentally attack a practical polarization encoding QKD system to obtain all the secret key information at the cost of only increasing the quantum bit error rate from 1.3 to 1.4%.
机译:众所周知,量子力学可以保证量子密钥分配(QKD)的无条件安全性。但是,实际的QKD系统存在一些缺陷,可以由窃听者控制,以攻击密钥。利用当前的实验技术,由熔融双锥技术制成的现实的分束器具有与波长有关的特性。基于此致命的安全漏洞,我们提出了一种与波长有关的攻击协议,该协议可应用于所有具有被动状态调制的实际QKD系统。此外,我们以实验方式攻击实用的极化编码QKD系统,以仅将量子误码率从1.3%提高到1.4%的代价获得所有秘密密钥信息。

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