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Airborne quantum key distribution:a review[Invited] 被引量:2

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摘要 Remarkable achievements have been witnessed in free-space quantum key distribution(QKD),which acts as an available approach to extend the transmission range of quantum communications.The feasibility of transmitting qubits through the free-space channel with the aid of moving platforms like satellites,aircraft,unmanned aerial vehicles(UAVs)has been verified.In view of the limited working time and resource consumption of the satellite-based QKD and the last-mile challenges of connecting satellite nodes with terrestrial networks,the airborne QKD is expected to provide flexible and relay links for the large-scale integrated network.This paper reviews the recent significant progress of QKD based on aircraft or UAVs,highlights their critical techniques,and prospects the future of airborne quantum communications.
作者 Yang Xue Wei Chen Shuang Wang Zhenqiang Yin Lei Shi Zhengfu Han 薛阳;陈巍;王双;银振强;石磊;韩正甫(CAS Key Laboratory of Quantum Information,University of Science and Technology of China,Hefei 230026,China;Information and Navigation College,Air Force Engineering University,Xi’an 710077,China)
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2021年第12期93-109,共17页 中国光学快报(英文版)
基金 supported by the National Key Research and Development Program of China(No.2018YFA0306400) National Natural Science Foundation of China(Nos.61627820,61822115,61971436,and 61675189) Anhui Initiative in Quantum Information Technologies(No.AHY030000)。
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  • 1YAN FengLi1, GAO Ting2 & LI YouCheng1 1 College of Physics and Information Engineering, Hebei Normal University, Shijiazhuang 050016, China,2 College of Mathematics and Information Science, Hebei Normal University, Shijiazhuang 050016, China.Quantum secret sharing between multiparty and multiparty with four states[J].Science China(Physics,Mechanics & Astronomy),2007,50(5):572-580. 被引量:18
  • 2刘立人.卫星激光通信 Ⅰ链路和终端技术[J].中国激光,2007,34(1):3-20. 被引量:78
  • 3Chen K,,Lo H K.Multi-partite quantum cryptographic protocols with noisy GHZ states[].Quant Inform Comput.2007
  • 4Townsend P D,Phoenix S J D,Blow K J, et al.Quantum cryptography for multi-user passive optical networks[].Electronics Letters.1994
  • 5Chen W,Han Z F,Zhang T, et al.Field experimental "star type" metropolitan quantum key distribution network[].IEEE Photonics Technology Letters.2009
  • 6Poppe A,Peev M,Maurhart O.Outline of the SECOQC quantum- key-distribution network in Vienna[].Int J Quantum Inf.2008
  • 7Chen T Y,,Liang H,Liu Y, et al.Field test of a practical secure com- munication network with decoy-state quantum cryptography[].Optics Express.2009
  • 8Subacius D,Zavriyev A,Trifonov A.Backscattering limitation for fiber-optic quantum key distribution systems[].Applied Physics Letters.2005
  • 9Zhang T,Mo X F,Han Z F, et al.Extensible router for a quantum key distribution network[].Physics Letters A.2008
  • 10Wen H,Han Z F,Guo G C, et al.The queuing model for quantum key distribution network[].Chin Phys B.2009

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