Acta Optica Sinica, Volume. 37, Issue 5, 527002(2017)
Round Robin Differential Phase Shift Quantum Key Distribution Protocol Based on Heralded Single Photon Source and Detector Decoy State
[1] [1] Bennett C H, Brassard G. Quantum cryptography: Public key distribution and coin tossing[C]. Proceeding of IEEE International Conference on Computers, Systems and Signal Processing, 1984: 175-179.
[2] [2] Liu Y, Chen T Y, Wang J, et al. Decoy-state quantum key distribution with polarized photons over 200 km[J]. Opt Express, 2010, 18(8): 8587-8594.
[3] [3] Wang L, Zhao S M, Gong L Y , et al. Free-space measurement-device-independent quantum-key-distribution protocol using decoy states with orbital angular momentum[J]. Chin Phys B, 2015, 24(12): 120307.
[4] [4] Yan Long, Sun Hao, Zhao Shengmei. Study on decoyed measurement device independent quantum key distribution protocol using orbital angular momentum[J]. Journal of Signal Processing, 2014, 30(11): 1275-1278.
[5] [5] Xiao Hong, Shi Peng, Zhao Shengmei. A reconciliation protocol with delayed error correction for quantum key distribution[J]. Scientia Sinica: Technologica, 2015, 45(8): 843-848.
[6] [6] Wang Yunyan, Guo Dabo, Zhang Yanhuang, et al. Algorithm of multidimensional reconciliation for continuous-variable quantum key distribution[J]. Acta Optica Sinica, 2014, 34(8): 0827002.
[7] [7] Chen Yan, Shen Yong, Zou Hongxin. An all-fiber continuous variable quantum key distribution based on multi-bits coding of single pulse[J]. Acta Optica Sinica, 2015, 35(7): 0727001.
[8] [8] Leverrier A, Grangier P. Continuous-variable quantum-key-distribution protocols with a non-Gaussian modulation[J]. Phys Rev A, 2011, 83(4): 042312.
[9] [9] Huang P, He G, Fang J, et al. Performance improvement of continuous-variable quantum key distribution via photon subtraction[J]. Phys Rev A, 2013, 87(1): 012317.
[10] [10] Sasaki T, Yamamoto Y, Koashi M. Practical quantum key distribution protocol without monitoring signal disturbance[J]. Nature, 2014, 509(7501): 475-478.
[11] [11] Zhang Z, Yuan X, Cao Z, et al. Round-robin differential-phase-shift quantum key distribution[EB/OL]. (2015-05-11)[2016-12-20]. https: ∥arxiv.org/abs/1505.02481.
[12] [12] Mizutani A, Imoto N, Tamaki K. Robustness of the round-robin differential-phase-shift quantum-key-distribution protocol against source flaws[J]. Phys Rev A, 2015, 92(6): 060303.
[13] [13] Sasaki T, Koashi M. Round-robin differential phase-shift quantum key distribution protocol with threshold detectors[C]. 5th International Conference on Quantum Cryptography, 2015.
[14] [14] Yin H L, Fu Y, Mao Y, et al. Detector-decoy quantum key distribution without monitoring signal disturbance[J]. Phys Rev A, 2016, 93(2): 022330.
[15] [15] Zhang Y Y, Bao W S, Zhou C, et al. Practical round-robin differential phase-shift quantum key distribution[J]. Opt Express, 2016, 24(18): 20763-20773.
[16] [16] Takesue H, Sasaki T, Tamaki K, et al. Experimental quantum key distribution without monitoring signal disturbance[J]. Nature Photonics, 2015, 9: 827-831.
[17] [17] Wang S, Yin Z Q, Chen W, et al. Experimental demonstration of a quantum key distribution without signal disturbance monitoring[J]. Nature Photonics, 2015, 9: 832-836.
[18] [18] Li Y H, Cao Y, Dai H, et al. Experimental round-robin differential phase-shift quantum key distribution[J]. Phys Rev A, 2016, 93(3): 030302.
[19] [19] Guan J Y, Cao Z, Liu Y, et al. Experimental passive round-robin differential phase-shift quantum key distribution[J]. Phys Rev Lett, 2015, 114(18): 180502.
[20] [20] Lütkenhaus N. Security against individual attacks for realistic quantum key distribution[J]. Phys Rev A, 2000, 61(5): 052304.
[21] [21] Moroder T, Curty M, Lütkenhaus N. Detector decoy quantum key distribution[J]. New J Phys, 2009, 11(4): 045008.
[22] [22] Ma X, Qi B, Zhao Y, et al. Practical decoy state for quantum key distribution[J]. Phys Rev A, 2005, 72(1): 012326.
Get Citation
Copy Citation Text
Hu Kang, Mao Qianping, Zhao Shengmei. Round Robin Differential Phase Shift Quantum Key Distribution Protocol Based on Heralded Single Photon Source and Detector Decoy State[J]. Acta Optica Sinica, 2017, 37(5): 527002
Category: Quantum Optics
Received: Jan. 5, 2017
Accepted: --
Published Online: May. 5, 2017
The Author Email: