• Chinese Journal of Quantum Electronics
  • Vol. 32, Issue 6, 699 (2015)
ZHANGWanhang * and Lei MA
Author Affiliations
  • [in Chinese]
  • show less
    DOI: 10.3969/j.issn.1007-5461. 2015.06.010 Cite this Article
    ZHANGWanhang, MA Lei. Influence of local entanglement swapping on quantum random networks robustness[J]. Chinese Journal of Quantum Electronics, 2015, 32(6): 699 Copy Citation Text show less
    References

    [1] Manuel Vogel. Quantum computation and quantum information[J]. Contemporary Physics,2011,52(6): 604-605.

    [2] Spiller T P,Munro W J,Barrett S D,et al. An introduction to quantum information processing: Applications and realizations[J]. Contemporary Physics,2005,4(6): 407-436.

    [3] Stajic Jelena. The future of quantum information processing: Introduction[J]. Science,2013,339(6124): 1163.

    [5] Rass S,Wiggle A,Schartner P. Building a quantum network: How to optimize security and expenses[J]. Journal of Network and Systems Management,2010,18(3): 283-299.

    [6] Bianconi Ginestra. Size of quantum networks[J]. Phys. Rev. E,2003,67(5): 6119.

    [7] Kimble H J. The quantum internet[J]. Nature,2008,453(7198): 1023-1030.

    [8] Strogatz S H. Exploring complex networks[J]. Nature,2001,410(6825): 268-276.

    [9] Perseguers S,Lapeyre G J,et al. Distribution of entanglement in large-scale quantum networks[J]. Reports on Progress in Physics,2013,7(9): 096001.

    [10] Callaway D S,Newman M E,et al. Network robustness and fragility: Percolation on random graphs[J]. Phys. Rev. Lett.,2001,85(25): 5468-5471.

    [11] Bachor,Hans-albert. Entanglement distillation: Pick the best and ignore the rest[J]. Nature Physics,2008,4(12): 909-910.

    [14] Zhang Yong,Guo Lin. Network percolation based on complex network[J]. Journal of Networks,2013,8(8): 1874-1881.

    [15] Acín Antonio,et al. Entanglement percolation in quantum networks[J]. Nature Physics,2007,3(4): 256-259.

    [16] Li Dechao. Entanglement transformation between two-qubit mixed states by LOCC[J]. Phys. Lett. A,2009,373(40): 3610-3613.

    [17] Nicolas Gisin,Rob Thew. Quantum communication[J]. Nature Photonics,2007,1(3): 165-171.

    [19] Zukowski,et al. “Event-ready-detectors”Bell experiment via entanglement swapping[J]. Phys. Rev. Lett.,1993,71(26): 4287-4290.

    [20] Cuquet Martí,Calsamiglia John. Entanglement percolation in quantum complex networks[J]. Phys. Rev. Lett.,2010,103(24): 240503.

    [21] Cuquet Martí,et al. Limited-path-length entanglement percolation in quantum complex networks[J]. Phys. Rev. A,2011,83(03): 032319.

    [23] Newman M E,Strogatz S H,et al. Random graphs with arbitrary degree distributions and their applications[J]. Phys. Rev. E,2001,64(2): 026118.

    [24] Serrano M Angeles,Boguá Marián. Percolation and epidemic thresholds in clustered networks[J]. Phys. Rev. Lett.,2006,97(8): 8701.

    [25] Moore C,Newman M E. Exact solution of site and bond percolation on small-world networks[J]. Phys. Rev. E,2000,62(5): 7059-7064.

    [26] Albert,Jeong,Barabasi. Error and attack tolerance of complex networks[J]. Nature,2000,40(6794): 378-382.

    [27] Stubbs D F,Good P I. Connectivity in random networks[J]. Bulletin of Mathematical Biology,1976,38(3): 295-304.

    ZHANGWanhang, MA Lei. Influence of local entanglement swapping on quantum random networks robustness[J]. Chinese Journal of Quantum Electronics, 2015, 32(6): 699
    Download Citation