Laser Technology, Volume. 46, Issue 1, 79(2022)
Quantum secure direct communication based on the mixture of n-particle GHZ state and single photon
[1] [1] BEIGE A, ENGLERT B G, KURTSIEFER C. Secure communication with a publicly known key[J]. Acta Physica Polonica, 2002, A101(3): 357-368.
[2] [2] BOSTROM K, FELBINGER T. Deterministic secure direct communication using entanglement[J]. Physical Review Letters, 2002, 89(20):187902.
[3] [3] WOJCIK A. Eavesdropping on the“Ping-Pong”quantum communication protocol[J]. Physical Review Letters, 2003, 90(15):157901.
[4] [4] CAI Q Y. The “Ping-Pong” protocol can be attacked without eavesdropping[J]. Physical Review Letters, 2003, 91(10):109801.
[5] [5] DENG F G, LONG G L, LIU X S. Two-step quantum direct communication protocol using the Einstein-Podolsky-Rosen pair block[J]. Physics Review, 2003, A68(4):113-114.
[6] [6] WANG J, ZHANG Q, TANG C J. Quantum secure direct communication based on order rearrangement of single photons[J].Physics Letters,2006, A358(4): 256-258.
[7] [7] YAN F L, HUO H R. A method for teleporting an unknown quantum state and its application[J]. Communication in Theoretical Physics, 2007, 47(4): 629-632.
[8] [8] LIN S, WEN Q Y, GAO F, et al. Quantum secure direct communication with X-type entangled stated[J]. Physics Review, 2008, A78(6):064304.
[9] [9] XIU X M, GAO Y J. Quantum secure direct communication using W state[J]. Communications in Theoretical Physics, 2008, 49(6): 1495-1498.
[10] [10] DONG L, XIU X M. Improvement on quantum secure direct communication with W state in noisy channel[J]. Communications in Theoretical Physics, 2009, 51(2):232-234.
[11] [11] SHIMA H, MONIREH H. Efficient controlled quantum secure direct communication based om GHZ-like states[J]. Quantum Information Processing,2015,14(2):739-753.
[12] [12] ZHANG M L, LIU Y H, NIE M. An efficient controlled quantum secure direct communication protocol [J]. Journal of Quantum Electronics, 2018, 35(3): 320-325(in Chinese).
[13] [13] KUANG Ch, ZHENG X Y. Controlled quantum secure direct communication based on GHZ like state [J]. Acta Quantum Electronics Sinica, 2019, 36(6): 714-718(in Chinese).
[14] [14] XIANG Y. Design of information transmission protocol based on quantum entangled state [D]. Chengdu: Sichuan Normal University, 2016:1-20(in Chinese).
[15] [15] DENG F G, LONG G L. Secure direct communication with a quantum one-time pad [J]. Physics Review, 2004, A69 (5):052319.
[16] [16] WANG J, CHEN H Q, ZHANG Q, et al. Quantum secure communication protocols on the basis of entanglement swapping[J]. Journal of National University of Defense Technology, 2007, 29(2): 56-60 (in Chinese).
[17] [17] WANG J, CHEN H Q, ZHANG Q, et al. Multiparty controlled quantum secure direct communication protocol[J]. Acta Physica Sinica, 2007, 56(2): 673-677(in Chinese).
[18] [18] QUAN D X, PEI C X, LIU D, et al. One-way deterministic secure quantum communication protocol based on single photons[J]. Acta Physica Sinica, 2010, 59(4): 2493-2497(in Chinese).
[19] [19] CAO Zh W, ZHAO G, ZHANG Sh H, et al. Quantum secure direct communication scheme based on Bell state particles and single photon mixing [J]. Acta Physica Sinica, 2016, 65(23): 230301(in Chinese).
[20] [20] LIU Zh H, CHEN H W. Information leakage problem of quantum secure direct communication scheme based on Bell state particles and single photon mixing [J]. Acta Physica Sinica, 2017,66(13): 130304(in Chinese).
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ZHOU Xiantao, JIANG Yinghua. Quantum secure direct communication based on the mixture of n-particle GHZ state and single photon[J]. Laser Technology, 2022, 46(1): 79
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Received: Jun. 15, 2021
Accepted: --
Published Online: Feb. 28, 2022
The Author Email: JIANG Yinghua (250364629@qq.com)