• Chinese Journal of Quantum Electronics
  • Vol. 36, Issue 4, 456 (2019)
CHENJinlian *, Dongfen LI, Qin ZHOU, and Yanhan YANG
Author Affiliations
  • [in Chinese]
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    DOI: 10.3969/j.issn.1007-5461. 2019.04.012 Cite this Article
    CHENJinlian, LI Dongfen, ZHOU Qin, YANG Yanhan. Quantum teleportation for unknown six-qubit entangled state and principle verification[J]. Chinese Journal of Quantum Electronics, 2019, 36(4): 456 Copy Citation Text show less
    References

    [1] Agus P, Heru S, Lila Y. Quantum entanglement and reduced density matrices [J]. International Journal of Theoretical Physics , 2018, 57(8): 2426-2436.

    [2] Zhukov A A, Kiktenko E O, Elistratov A A. Quantum communication protocols as a benchmark for programmable quantum computers [J]. Quantum Information Processing , 2019, 18(1): 31-54.

    [3] Bennett C H, Brassard G, Crepeau C, et al . Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels [J]. Physical Review Letters , 1993, 70(13): 1895-1899.

    [4] Heo J, Hong C H, Kang M S, et al . Implementation of controlled quantum teleportation with an arbitrator for secure quantum channels via quantum dots inside optical cavities [J]. Scientific Reports , 2017, 7(1): 14905.

    [5] Hou Kui, Bao Daqiang, Zhu Chengjie, et al . Controlled teleportation of an arbitrary two-qubit entanglement in noises environment [J]. Quantum Information Processing , 2019, 18(4): 104-123.

    [6] Marlon D, Babatunde J, Sun Guohua, et al . Quantum teleportation and information splitting via four-qubit cluster state and a Bell state [J]. Frontiers of Physics , 2017, 12(5): 171-179.

    [7] Wen Mingguo, Lei Ruqin. Hierarchical and probabilistic quantum information splitting of an arbitrary two-qubit state via two cluster states [J]. Chinese Physics B , 2018, 27(11): 382-389.

    [8] Wei Fengcao, Yu Guangyang. Verifiable quantum secret sharing protocols based on four-qubit entangled states [J]. International Journal of Theoretical Physics , 2019, 58(4): 1202-1214.

    [9] Hua Wangqin, Raylin T, Yue Weidai. Quantum secret sharing by using Fourier transform on orbital angular momentum [J]. IET Information Security , 2019, 13(2): 104-108.

    [10] Wang Kan, Cai Rui, Yu Xutao, et al . Quantum handshake beacon in communication system using bidirectional quantum teleportation [J]. International Journal of Theoretical Physics , 2019, 58(1): 121-135.

    [11] Shi Jin, Ma Pengcheng, Chen Guibin. Schemes for bidirectional quantum teleportation via a hyper-entangled state [J]. International Journal of Theoretical Physics , 2019, 58(2): 372-382.

    [12] Tan Xiaoqing, Zhang Xiaoqian, Song Tingting. Deterministic quantum teleportation of a particular six-qubit state using six-qubit cluster state [J]. International Journal of Theoretical Physics , 2015, 55(1): 1-6.

    [13] Zhao Nan, Li Min, Chen Nan, et al . An efficient quantum teleportation of six-qubit state via an eight-qubit cluster state [J]. Canadian Journal of Physics , 2018, 9(6): 650-653.

    [15] Zhao Nan, Li Min, Chen Nan, et al . Quantum teleportation of eight-qubit state via six-qubit cluster state [J]. International Journal of Theoretical Physics , 2018, 57(2): 516-522.

    [16] Sisodia M, Pathak A. Comment on “Quantum teleportation of eight-qubit state via six-qubit cluster state"[J]. International Journal of Theoretical Physics , 2018, 57(7): 2213-2217.

    [17] Quan Quan, Zhao Mingjing, Fei Shaoming, et al . Two-copy quantum teleportation [J]. Scientific Reports , 2018, 8(1): 1-8.

    [19] Jiang Linan. Quantum teleportation under different collective noise environment [J]. International Journal of Theoretical Physics , 2019, 58(2): 522-530.

    [20] Li Dongfen, Wang Ruijin, Edward B. Quantum teleportation of an arbitrary two-qubit state by using two three-qubit GHZ states and the six-qubit entangled state [J]. Quantum Information Processing , 2019, 18(5): 147-162.

    [21] Mitali S, Abhishek S, Kishore T, et al . Design and experimental realization of an optimal scheme for teleportation of an n-qubit quantum state [J]. Quantum Information Processing , 2017, 1(12): 292-311.

    [22] Behera B K, Banerjee A, Panigrahi P K. Experimental realization of quantum cheque using a five-qubit quantum computer [J]. Quantum Information Processing , 2017, 1(12): 312-324.

    [23] Vuillot C. Is error detection helpful on IBM 5Q chips [J]. Quantum Information and Computation , 2018, 18(11-12): 949-964.

    [24] Sisodia M, Shukla A, Pathak A. Experimental realization of nondestructive discrimination of Bell states using a five-qubit quantum computer [J]. Physics Letters A , 2017, 381(46): 3860-3874.

    [25] Dintomon J, Sabir M. Efficient schemes for the quantum teleportation of a sub-class of tripartite entangled states [J]. Quantum Information Processing , 2018, 17(7): 170-181.

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    CHENJinlian, LI Dongfen, ZHOU Qin, YANG Yanhan. Quantum teleportation for unknown six-qubit entangled state and principle verification[J]. Chinese Journal of Quantum Electronics, 2019, 36(4): 456
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