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SECURITY AGAINST EAVESDROPPING IN QUANTUM CRYPTOGRAPHY

机译:量子加密中的防盗安全

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Quantum cryptography is a method for providing two parties who want to communicate securely with a secret key to be used in established protocols of classical cryptography. For more reviews of this topic see. Bennett and Brassard showed that it is possible, at least ideally, to create a secret key, shared by sender and receiver, without both parties sharing any secret beforehand. We refer to this protocol as the BB84 protocol. To achieve this goal, sender and receiver are linked by two channels. The first channel is a public channel. The information distributed on it is available to both parties and to a potential eavesdropper. To demonstrate the principle of quantum cryptography we assume that the signals on this channel can not be changed by third parties. The second channel is a channel with strong quantum features. An eavesdropper can interact with the signal in an effort to extract information about the signals. The signal states are chosen in such a way that there is always, on average, a back reaction onto the signal states. We assume the quantum channel to be noiseless and perfect so that the back reaction of the eavesdropper's activity manifests itself as an induced error rate in the signal transmission.
机译:量子密码术是一种用于为希望与要在已建立的古典密码学协议中使用的秘密密钥进行安全通信的双方提供方法。有关此主题的更多评论,请参见。 Bennett和Brassard表明,至少在理想情况下,可以创建一个由发送方和接收方共享的密钥,而无需双方事先共享任何密钥。我们将此协议称为BB84协议。为了实现此目标,发送者和接收者通过两个通道链接。第一个频道是公共频道。双方和潜在的窃听者都可以使用其中分发的信息。为了演示量子密码学的原理,我们假设第三方无法更改此通道上的信号。第二通道是具有强量子特征的通道。窃听者可以与信号进行交互,以提取有关信号的信息。以这样的方式选择信号状态,即,平均而言,总是对信号状态产生反作用。我们假设量子通道是无噪声且完美的,因此窃听者活动的反作用本身表现为信号传输中的诱发错误率。

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