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Calculation of key reduction for B92 QKD protocol

机译:B92 QKD协议的关键减少计算

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It is well known that Quantum Key Distribution (QKD) can be used with the highest level of security for distribution of the secret key, which is further used for symmetrical encryption. B92 is one of the oldest QKD protocols. It uses only two non-orthogonal states, each one coding for one bit-value. It is much faster and simpler when compared to its predecessors, but with the idealized maximum efficiencies of 25% over the quantum channel. B92 consists of several phases in which initial key is significantly reduced: secret key exchange, extraction of the raw key (sifting), error rate estimation, key reconciliation and privacy amplification. QKD communication is performed over two channels: the quantum channel and the classical public channel. In order to prevent a man-in-the-middle attack and modification of messages on the public channel, authentication of exchanged values must be performed. We used Wegman-Carter authentication because it describes an upper bound for needed symmetric authentication key. We explained the reduction of the initial key in each of QKD phases.
机译:众所周知,量子密钥分布(QKD)可以与最高级别的安全性一起使用,用于分发秘密密钥,其进一步用于对称加密。 B92是最古老的QKD协议之一。它仅使用两个非正交状态,每个都是一个编码一个比特值。与其前身相比,它更快,更简单,但在量子通道上的理想最大效率为25%。 B92由几个阶段组成,其中初始键显着减少:秘密关键交换,提取原始键(筛选),错误率估计,关键和解和隐私放大。 QKD通信在两个通道上进行:量子通道和经典公共信道。为了防止在公共信道上的中间人攻击和修改消息中,必须执行交换值的身份验证。我们使用Wegman-Carter身份验证,因为它描述了所需对称认证密钥的上限。我们解释了QKD阶段中的每一个阶段的初始键的减少。

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