[1] Bennett C H, Brassard G, Crepeau C, et al. Teleportation an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels [J]. Phys. Rev. Lett., 1993, 70: 1895-1899.
[2] Deng Fuguo, Li Chunyan, Li Yansong, et al. Symmetric multiparty-controlled teleportation of an arbitrary two-particle entanglement [J]. Phys. Rev. A, 2005, 72: 22338.
[3] Hong Zhihui, Nie Yiyou, Li Songsong, et al. Quantum teleportation of four-particle cluster state [J]. Journal of Jiangxi Normal university(Natural Science)( 江西师范大学学报(自然科学版)), 2007, 3l(5): 459-562(in Chinese).
[4] Li Jun, Ma Lei. Multipartite entanglement in noninertial frames[J]. Chinese Journal of Quantum Electronics( 量子电子学报), 2017, 34(1): 40-45(in Chinese) .
[5] Han Wenjuan, Zhou Xun. Calculation of entanglement and analysis of the XY Heisenberg model of open spin-1/2 chains in one dimension[J]. Chinese Journal of Quantum Electronics( 量子电子学报), 2009, 26(1): 76—80(in Chinese) .
[6] Zhuansun Shaoshuai, Chen Hong, Cai Xiaoxia. Quantum deterministic key distribution protocol based on GHZ states entanglement swapping[J]. Chinese Journal of Quantum Electronics( 量子电子学报), 2015, 32(1): 83—89(in Chinese) .
[7] Jiang Zhongsheng, Lu Hongjun, Xie Guangjun. Quantum information splitting of four particle W state by using five entangled particle state[J]. Chinese Journal of Quantum Electronics( 量子电子学报), 2013, 30(3): 310—313(in Chinese) .
[8] Yeo Y, Chua W K. Teleportation and dense coding with genuine multipartite entanglement [J]. Phys. Rev. Lett., 2006, 96: 060502-060505.
[9] Leng Chunling, Zhang Yingqiao, Ji Xin. The Χ-type four-particle entangled state generated by using superconducting artificial atoms with broken symmetry [J]. Acta. Phys. Sin.( 物理学报) , 2015, 64(18): 184207(in Chinese).
[10] Long Guilu, Wang Chuan, Li Yansong, et al. Quantum secure direct communication [J]. Sci. Sin. Phys. Mech. Astron.(中国科学:物理学 力学 天文学), 2011,41(4):332—342(in Chinese).
[11] Deng Fuguo, Zhou Ping, Li Xihan, et al. Progress on Study of Quantum Secure Direct Communication [J]. Nuclear Physics Review(原子核物理评论), 2005,22(4):382—386(in Chinese).
[12] Tokunaga Y, Yamamoto T, Koashi M, et al. Simple experimental scheme of preparing a four-photon entangled state for the teleportation-based realization of a linear optical controlled-NOT gate [J]. Phys. Rev. A, 2005, 71: 030301.
[13] Wang Xinwen, Yang Guojian. Generation and discrimination of a type of four-partite entangled state [J]. Phys. Rev. A, 2008, 78: 024301.
[14] Borras A, Plastino A R, Batle J, et al. Multiqubit systems: Highly entangled states and entanglement distribution [J]. J. Phys. A: Math. Theor., 2007, 40: 13407.
[15] Qu Ri, Ma Yiping,Wang Bo, et al. Relationship among locally maximally entanglable states, W states and hypergraph states under local unitary transformations [J].Phys. Rev. A, 2013, 87: 052331.
[16] Nielsen Michael A, Chuang Isaac L. Quantum Computation and Quantum Information (I) - Quantum Computing Part [M]( 量子计算和量子信息(一)— 量子计算部分). Beijing: Tsinghua University Press, 2003(in Chinese).
[17] Li Chengzu, et al. Quantum communication and quantum computing [M]
(量子通信和量子计算) Changsha: National University of Defense Technology
Press, 2000:103(in Chinese).
[18] Zhang Yongde, Principle of Quantum Information Physics [M](量子信息物理原
理). Beijing: Science Press, 2005:38-39.
[19] Zha Xinwei, Song Haiyang, Feng Feng. A criterion to identify maximally entangled four-qubit state [J]. Commun.Theor.Phys., 2011, 56: 827-830.
[20] Zha Xinwei, Yuan Chenzhi, Zhang Yanpeng. Generalized criterion for a maximally multi-qubit entangled state [J]. Laser Phys. Lett.,2013, 10:045201.
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