Chinese Journal of Quantum Electronics, Volume. 30, Issue 5, 579(2013)
Scheme of quantum private comparison via Bell states and Bell entanglement swapping
[1] [1] Bennett C H, Brassard G. Quantum cryptography: Public-key distribution and coin tossing [C]. Proceedings of IEEE International Conference on Computers, Systems and Signal Processing, 1984, 175-179.
[10] [10] Bennett C H, Brassard G, Crépeau C, et al. Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels [J]. Phys. Rev. Lett., 1993, 70(13): 1895-1899.
[11] [11] Zhang Z Y, Liu Y M, Zuo X Q, et al. Transformation operator and criterion for perfectly teleporting arbitrary three-qubit state with six-qubit channel and Bell-state measurement [J]. Chin. Phys. Lett., 2009, 2(12): 120303.
[12] [12] Tsai C W, Hwang T. Teleportation of a pure EPR state via GHZ-like state [J]. Int. J. Theor. Phys., 2010, 49(8): 1969-1975.
[13] [13] Zou X F, Qiu D W. Attacks and improvements of QSDC schemes based on CSS codes [J]. Bio-Inspired Computing and Applications (Lecture Notes in Computer Science), 2012, 6840: 239-246.
[14] [14] Li N, Zha X W, Lan Q. Secure quantum report with authentication based on six-particle cluster state and entanglement swapping [J]. Science China (Information Sciences), 2012, 55(12): 2881-2887.
[15] [15] Zhan Y B, Zhang L L, Zhang Q Y. Quantum secure direct communication by entangled qutrits and entanglement swapping [J]. Opt. Commun., 2009, 282(23): 4633-4636.
[16] [16] Yang C W, Tsai C W, Hwang T. Fault tolerant two-step quantum secure direct communication protocol against collective noises [J]. Sci. China Ser. G: Phys. Mech. Astron., 2011, 54(3): L496-501.
[17] [17] Hillery M, Buzek V, Berthiaume A. Quantum secret sharing [J]. Phys. Rev. A, 1999, 59(3): 1829-1834.
[20] [20] Hwang T, Hwang C C, Li C M. Multiparty quantum secret sharing based on GHZ states [J]. Phys. Scr., 2011, 83: 045004.
[21] [21] Deng F G, Long G L, et al. An efficient quantum secret sharing scheme with Einstein-Podolsky-Rosen pairs [J]. Phys. Lett. A, 2005, 340(1-4): 43-50.
[22] [22] Han L F, Liu Y M, Liu J, et al. Multiparty quantum secret sharing of secure direct communication using single photons [J]. Opt. Commun., 2008, 281(9): 2690-2694.
[23] [23] Deng F G, Li X H, Zhou H Y. Efficient high-capacity quantum secret sharing with two-photon entanglement [J]. Phys. Lett. A, 2008, 372(12): 1957-1962.
[24] [24] Sun Y, Wen Q Y, Gao F, et al. Multiparty quantum secret sharing based on Bell measurement [J]. Opt. Commun., 2009, 282(17): 3647-3651.
[25] [25] Shi R H, Huang L S,et al. Multiparty quantum secret sharing with Bell states and Bell measurements [J]. Opt. Commun., 2010, 283(11): 2476-2480.
[27] [27] Li X H, Deng F G, Zhou H Y. Efficient quantum key distribution over a collective noise channel [J]. Phys. Rev. A, 2008, 78: 022321.
[28] [28] Chen W, Han Z F, Zhang T, et al. Field experiment on a “star type” metropolitan quantum key distribution network [J]. IEEE Photonics Tech. Lett., 2009, 21: 575-577.
[29] [29] Yang Y G, Wen Q Y. An efficient two-party quantum private comparison protocol with decoy photons and two-photon entanglement [J]. J. Phys. A Math. Theor., 2009, 42(5): 055305.
[30] [30] Chen X B, Xu G, Niu X X, et al. An efficient protocol for the private comparison of equal information based on the triplet entangled state and single particle measurement [J]. Opt. Commun., 2010, 283(7): 1561-1565.
[31] [31] Greenberger D M, Horne M A, Zeilinger A. Going beyond Bell’s theorem [J]. Quantum Physics, 2007, arxiv 0712. 0921.
[32] [32] Shi R H, Zhong H. Multi-party quantum key agreement with Bell states and Bell measurements [J]. Quantum Inf. Process, 2013, 12: 921-932.
Get Citation
Copy Citation Text
SUN Xin-mei, ZHA Xin-wei, LI Ning. Scheme of quantum private comparison via Bell states and Bell entanglement swapping[J]. Chinese Journal of Quantum Electronics, 2013, 30(5): 579
Category:
Received: Mar. 13, 2013
Accepted: --
Published Online: Sep. 30, 2013
The Author Email: Xin-mei SUN (sunxinmei0915@163.com)