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首页> 外文期刊>Optics Letters >Employing covert communications-based information reconciliation and multiple spatial modes to polarization entanglement QKD
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Employing covert communications-based information reconciliation and multiple spatial modes to polarization entanglement QKD

机译:采用基于Covert Communications的信息和解和多个空间模式到极化纠缠QKD

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摘要

The information that is leaked to an eavesdropper during the error reconciliation phase of quantum key distribution (QKD) protocols limits the maximum bit error rate (BER) of a system. In a standard QKD protocol, parity bits are transmitted over an authenticated noiseless channel, to which Eve has access. This Letter presents the concept of using a covert classical communication channel to transmit the parity bits between Alice and Bob without Eve gaining information of the transmitted parity bits. This allows for higher secure key generation rates and operation of a QKD system in which the BER exceeds the limit of the standard protocol. This concept is then applied to a practical freespace optical system that contains multiple parallel channels, where channel loss, crosstalk, atmospheric turbulence effects, and noise are considered. (C) 2019 Optical Society of America
机译:在量子密钥分布(QKD)协议的误差协调阶段期间泄漏到窃听器的信息限制了系统的最大误码率(BER)。 在标准QKD协议中,奇偶校验位通过经过认证的无噪声信道传输,eve具有访问权限。 这封信呈现了使用封面经典通信信道在Alice和Bob之间传输奇偶校验位的概念,而不需要发射的奇偶校验比特的信息。 这允许QKD系统的更高的安全密钥生成速率和操作,其中BER超过标准协议的极限。 然后将该概念应用于具有多个并行通道的实际Freespace光学系统,其中信道丢失,串扰,大气湍流效应和噪声。 (c)2019年光学学会

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