论文标题

实验模式配对测量设备无关的量子键分布,而无需全局相锁定

Experimental mode-pairing measurement-device-independent quantum key distribution without global phase-locking

论文作者

Zhu, Hao-Tao, Huang, Yizhi, Liu, Hui, Zeng, Pei, Zou, Mi, Dai, Yunqi, Tang, Shibiao, Li, Hao, You, Lixing, Wang, Zhen, Chen, Yu-Ao, Ma, Xiongfeng, Chen, Teng-Yun, Pan, Jian-Wei

论文摘要

在过去的二十年中,基于电信纤维的量子密钥分布网络已在大都会和城市间尺度上实施。瓶颈之一在于关键速率相对于传输距离的指数衰减。最近提出的计划主要集中于通过在两个通信方上创建长臂单光子干涉仪来实现更长的距离。尽管在较长的沟通距离上表现出色,但两个独立激光器之间的相锁定的要求在技术上具有挑战性。通过采用最近提供的模式对构想,我们实现了高性能量子密钥分布而无需全球相锁定。使用两个独立的现成的激光器,我们在大都市和城市间距离方面显示了与常规测量设备独立的方案相比,二次钥匙率改进。对于更长的距离,我们还通过304 km的商业纤维和407 km的超低损失纤维提高了三个数量级的关键率性能。我们希望这种现成的高性能方案将在未来的城市量子通信网络中广泛使用。

In the past two decades, quantum key distribution networks based on telecom fibers have been implemented on metropolitan and intercity scales. One of the bottlenecks lies in the exponential decay of the key rate with respect to the transmission distance. Recently proposed schemes mainly focus on achieving longer distances by creating a long-arm single-photon interferometer over two communication parties. Despite their advantageous performance over long communication distances, the requirement of phase-locking between two independent lasers is technically challenging. By adopting the recently-proposed mode-pairing idea, we realize high-performance quantum key distribution without global phase-locking. Using two independent off-the-shelf lasers, we show a quadratic key-rate improvement over the conventional measurement-device-independent schemes in the regime of metropolitan and intercity distances. For longer distances, we also boost the key rate performance by three orders of magnitude via 304 km commercial fiber and 407 km ultra-low-loss fiber. We expect this ready-to-implement high-performance scheme to be widely used in future intercity quantum communication networks.

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