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Entanglement Based Free-Space Quantum Key Distribution

机译:基于纠缠的自由空间量子密钥分配

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We report on the progress of our real-time entanglement based free-space quantum key distribution (QKD) system which uses polarization entangled photon pairs sent over a variety of free-space optical telescope links to distribute the key. An experiment with one photon from each pair sent over a 1,325 m long free-space link and the other photon detected locally next to the source is described. The system performs the complete QKD protocol including all error correction and privacy amplification algorithms. Over the course of 6.5 hours of communication at night an average raw key rate of 1,398 bits/s with an average quantum bit error rate (QBER) of 4.58% was observed producing an average final key rate of 244 bits/s. We also performed a Bell inequality experiment over two free-space links of 435 m and 1,325 m respectively, producing a total separation of 1,575 m between the two detectors in the experiment. During the Bell inequality experiment we observed an average Bell parameter of 2.51 ± 0.11.
机译:我们报告了基于实时纠缠的自由空间量子密钥分配(QKD)系统的进展,该系统使用通过各种自由空间光学望远镜链路发送的偏振纠缠光子对来分配密钥。描述了一个实验,其中每个对中的一个光子通过一条1,325 m长的自由空间链路发送,另一个光子在源旁边本地检测。该系统执行完整的QKD协议,包括所有纠错和隐私放大算法。在晚上进行的6.5个小时的通信过程中,观察到平均原始密钥速率为1,398位/秒,平均量子误码率(QBER)为4.58%,最终平均密钥速率为244位/秒。我们还分别在两个435 m和1,325 m的自由空间链路上进行了贝尔不等式实验,在实验中的两个检测器之间产生了1,575 m的总间隔。在Bell不平等实验中,我们观察到平均Bell参数为2.51±0.11。

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