论文标题

长距离自由空间测量设备与独立量子密钥分布

Long-distance free-space measurement-device-independent quantum key distribution

论文作者

Cao, Yuan, Li, Yu-Huai, Yang, Kui-Xing, Jiang, Yang-Fan, Li, Shuang-Lin, Hu, Xiao-Long, Abulizi, Maimaiti, Li, Cheng-Long, Zhang, Weijun, Sun, Qi-Chao, Liu, Wei-Yue, Jiang, Xiao, Liao, Sheng-Kai, Ren, Ji-Gang, Li, Hao, You, Lixing, Wang, Zhen, Yin, Juan, Lu, Chao-Yang, Wang, Xiang-Bin, Zhang, Qiang, Peng, Cheng-Zhi, Pan, Jian-Wei

论文摘要

基于两光子干扰的测量设备独立于量子键分布(MDI-QKD)对所有针对检测系统的攻击免疫,并且允许具有不受信任的继电器的QKD网络。由于提出了MDI-QKD协议,因此基于纤维的实现已迅速发展为更长的距离,更高的密钥速率和网络验证。但是,由于大气湍流的影响,MDI-QKD对自由空间通道的影响仍然在实验上具有挑战性。在这里,通过开发可靠的自适应光学系统,高精度时间同步和位于遥远的独立光子源之间的频率锁定,我们意识到在19.2公里的城市大气通道上,第一个自由空间MDI-QKD超过了有效的大气厚度。我们的实验迈出了基于卫星的MDI-QKD的第一步。此外,这里开发的技术为涉及独立单个光子长距离干扰的自由空间中的量子实验开辟了道路。

Measurement-device-independent quantum key distribution (MDI-QKD), based on two-photon interference, is immune to all attacks against the detection system and allows a QKD network with untrusted relays. Since the MDI-QKD protocol was proposed, fibre-based implementations have been rapidly developed towards longer distance, higher key rates, and network verification. However, owing to the effect of atmospheric turbulence, MDI-QKD over free-space channel remains experimentally challenging. Here, by developing the robust adaptive optics system, high precision time synchronization and frequency locking between independent photon sources located far apart, we realised the first free-space MDI-QKD over a 19.2-km urban atmospheric channel, which well exceeds the effective atmospheric thickness. Our experiment takes the first step towards satellite-based MDI-QKD. Moreover, the technology developed here opens the way to quantum experiments in free space involving long-distance interference of independent single photons.

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