Literature DB >> 34241519

Field Test of Twin-Field Quantum Key Distribution through Sending-or-Not-Sending over 428 km.

Hui Liu1,2, Cong Jiang3, Hao-Tao Zhu1,2, Mi Zou1,2, Zong-Wen Yu4,5, Xiao-Long Hu4, Hai Xu4, Shizhao Ma3, Zhiyong Han3, Jiu-Peng Chen1,2, Yunqi Dai6, Shi-Biao Tang6, Weijun Zhang7, Hao Li7, Lixing You7, Zhen Wang7, Yong Hua8, Hongkun Hu8, Hongbo Zhang8, Fei Zhou3, Qiang Zhang1,2,3, Xiang-Bin Wang2,3,4, Teng-Yun Chen1,2, Jian-Wei Pan1,2.   

Abstract

Quantum key distribution endows people with information-theoretical security in communications. Twin-field quantum key distribution (TF-QKD) has attracted considerable attention because of its outstanding key rates over long distances. Recently, several demonstrations of TF-QKD have been realized. Nevertheless, those experiments are implemented in the laboratory, and therefore a critical question remains about whether the TF-QKD is feasible in real-world circumstances. Here, by adopting the sending-or-not-sending twin-field QKD (SNS-TF-QKD) with the method of actively odd parity pairing (AOPP), we demonstrate a field-test QKD over 428 km of deployed commercial fiber and two users are physically separated by about 300 km in a straight line. To this end, we explicitly measure the relevant properties of the deployed fiber and develop a carefully designed system with high stability. The secure key rate we achieved breaks the absolute key rate limit of repeaterless QKD. The result provides a new distance record for the field test of both TF-QKD and all types of fiber-based QKD systems. Our work bridges the gap of QKD between laboratory demonstrations and practical applications and paves the way for an intercity QKD network with measurement-device-independent security.

Entities:  

Year:  2021        PMID: 34241519     DOI: 10.1103/PhysRevLett.126.250502

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  1 in total

1.  An Efficient Routing Protocol for Quantum Key Distribution Networks.

Authors:  Jiameng Yao; Yaxing Wang; Qiong Li; Haokun Mao; Ahmed A Abd El-Latif; Nan Chen
Journal:  Entropy (Basel)       Date:  2022-06-30       Impact factor: 2.738

  1 in total

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