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减轻光源抖动对量子密钥分发性能影响的方法 被引量:4

A method to eliminate influence of fluetuation of light source on performance of quantum key distribution
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摘要 在实际的量子密钥分发(QKD)系统中,光源参数会随着时间、环境的变化而抖动,导致QKD的成码率等性能下降.提岀一种减轻光源抖动对QKD性能影响的方法.该方法用标记相干态光源代替广泛使用的弱相干态光源,可以有效地提高QKD在光源抖动下的安全密钥生成率,克服光源抖动对QKD性能的影响,并增大传输距离.通过理论分析和数值仿真验证了所提出方法的可行性,该方法为QKD的实际应用提供了一种思路. In the real quantum key distribution(QKD)system,statistical fluetuation of the source parameters will happen with the changes of time and environment,which will lead to a serve decrease of the key rate.Regarding to the problem,a method is proposed to eliminate the influence of statistical fluctuation of the source parameters on the performance of QKD.In the method,the heralded coherent sources are used to replace the widely used weak coherent sources,which can significantly improve the key rate of QKD when there is statistical fluetuation on the source parameters,and thus the influence of statistical fluetuation on the source parameters is eliminated,while the maximum transmission distance is also significantly improved.Both the theoretical analysis and numerical simulation verify the feasibility of the proposed method,and it is believed that the method can provide a new idea for the practical application of QKD.
作者 沙倚天 冯宝 贾玮 李维 SHA Yitian;FENG Bao;JIA Wei;LI Wei(State Grid Nanjing Power Supply Company,Nanjing 210024,China;NARI Group Corporation/State Grid Electric Power Research Institute,Nanjing 211106,China;NRGD Quantum Technology Co.,Ltd.,Nanjing 211106,China)
出处 《量子电子学报》 CAS CSCD 北大核心 2020年第1期57-62,共6页 Chinese Journal of Quantum Electronics
基金 国网江苏省电力有限公司科技项目,J2018061。
关键词 量子光学 量子密钥分发 标记相干态 光源抖动 安全密钥 quantum optics quantum key distribution heralded coherent source source fluctuation secure key
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  • 1Walborn S P,Lemelle D S,Almeida M P, et al.Quantum key distribution with higher-order alphabets using spatially encoded qudits[].Physical Review Letters.2006
  • 2Zhang L J,Silberhorn C,Walmsley I A.Secure quantum key distribution using continuous variables of single photons[].Physical Review Letters.2008
  • 3Neves L,Lima G,Aguirre Gómez J G, et al.Generation of entangled states of qudits using twin photons[].Physical Review Letters.2005
  • 4Usenko V C,Paris Matteo G A.Multiphoton communication in lossy channels with photon-number entangled States[].Physical Review A Atomic Molecular and Optical Physics.2007
  • 5Lu Y J,Zhu L B,Ou Z Y, et al.Security improvement by using a modified coherent state for quantum cryptography[].Physical Review A Atomic Molecular and Optical Physics.2005
  • 6Yuan Z L,Dixon A R,Dynes J F, et al.Gigahertz quantum key distribution with InGaAs avalanche photodiodes[].Applied Physics Letters.2008
  • 7Rogers D J,Bienfang J C,Nakassis A, et al.Detector dead-time effects and paralyzability in high-speed quantum key distribution[]..
  • 8Zhang L B,Zhong Y Y,Kang L, et al.Near-infrared-wavelength superconducting single-photo detectors[].Chinese Science Bulletin.2008
  • 9Zhang S L,Zou X B,Li K, et al.Limitation of decoy-state Scarani-Acin-Ribordy-Gisin quantum-key-distribution protocols with a heralded single-photon source[].Physical Review A Atomic Molecular and Optical Physics.2007
  • 10Wang Q,Chen W,Xavier G, et al.Experimental decoy-state quantum key distribution with a sub-possionian heralded single-photon source[].Physical Review Letters.2008

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