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Full-field implementation of a perfect eavesdropper on a quantum cryptography system

机译:量子密码系统上完美窃听者的全场实现

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Quantum key distribution (QKD) allows two remote parties to grow a shared secret key. Its security is founded on the principles of quantum mechanics, but in reality it significantly relies on the physical implementation. Technological imperfections of QKD systems have been previously explored, but no attack on an established QKD connection has been realized so far. Here we show the first full-field implementation of a complete attack on a running QKD connection. An installed eavesdropper obtains the entire 'secret' key, while none of the parameters monitored by the legitimate parties indicate a security breach. This confirms that non-idealities in physical implementations of QKD can be fully practically exploitable, and must be given increased scrutiny if quantum cryptography is to become highly secure.. ? 2011 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:量子密钥分发(QKD)允许两个远程方增长共享的秘密密钥。它的安全性基于量子力学原理,但实际上,它很大程度上依赖于物理实现。先前已经探究了QKD系统的技术缺陷,但是到目前为止,尚未实现对已建立的QKD连接的攻击。在这里,我们显示了对正在运行的QKD连接的完整攻击的第一个全域实现。一个已安装的窃听者将获取整个“秘密”密钥,而合法方监视的任何参数都不会表明存在安全漏洞。这证实了QKD物理实现中的非理想性可以在实践中得到充分利用,并且如果要使量子密码学变得高度安全,必须对其进行更严格的审查。 2011年自然出版集团(Macmillan Publishers Limited的子公司)。版权所有。

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