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Floodlight quantum key distribution: A practical route to gigabit-per-second secret-key rates

机译:Floodlight量子密钥分发:达到每秒千兆比特秘密密钥速率的实用途径

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摘要

The channel loss incurred in long-distance transmission places a significant burden on quantum key distribution (QKD) systems: they must defeat a passive eavesdropper who detects all the light lost in the quantum channel and does so without disturbing the light that reaches the intended destination. The current QKD implementation with the highest long-distance secret-key rate meets this challenge by transmitting no more than one photon per bit [M. Lucamarini et al., Opt. Express 21, 24550 (2013)]. As a result, it cannot achieve the Gbps secret-key rate needed for one-time pad encryption of large data files unless an impractically large amount of multiplexing is employed. We introduce floodlight QKD (FL-QKD), which floods the quantum channel with a high number of photons per bit distributed over a much greater number of optical modes. FL-QKD offers security against the optimum frequency-domain collective attack by transmitting less than one photon per mode and using photon-coincidence channel monitoring, and it is completely immune to passive eavesdropping. More importantly, FL-QKD is capable of a 2-Gbps secret-key rate over a 50-km fiber link, without any multiplexing, using available equipment, i.e., no new technology need be developed. FL-QKD achieves this extraordinary secret-key rate by virtue of its unprecedented secret-key efficiency, in bits per channel use, which exceeds those of state-of-the-art systems by two orders of magnitude.
机译:长距离传输中发生的信道损耗给量子密钥分配(QKD)系统带来了沉重负担:它们必须击败无声窃听者,该窃听者可以检测到量子信道中丢失的所有光,并且在不干扰到达预定目标的光的情况下进行此操作。当前具有最高长距离秘密密钥率的QKD实现方式通过每位传输不超过一个光子来解决此挑战[M. Lucamarini等,选项。 Express 21,24550(2013)。结果,除非采用了不切实际的大量多路复用,否则它无法达到大数据文件的一次性填充加密所需的Gbps密钥速率。我们引入了泛光QKD(FL-QKD),该泛光QKD将大量分布在更多数量的光学模式中的每位光子散布到量子通道中。 FL-QKD通过在每个模式下传输少于一个光子并使用光子重合通道监控,提供了针对最佳频域集体攻击的安全性,并且完全不受被动窃听的影响。更重要的是,FL-QKD使用现有设备即可在50公里光纤链路上以2 Gbps的密钥速率进行传输,而无需任何复用,即不需要开发新技术。 FL-QKD凭借其空前的秘密密钥效率(每通道使用的比特数)达到了非同寻常的秘密密钥速率,比现有技术的系统高出两个数量级。

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