Acta Optica Sinica, Volume. 41, Issue 16, 1627002(2021)

EPR Quantum Steering Switch Based on Entanglement Swapping

Shuqin Zhai1,2、*, Nan Yuan1, and Kui Liu2
Author Affiliations
  • 1College of Physics and Electronic Engineering, Shanxi University, Taiyuan, Shanxi 0 30006, China
  • 2State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan, Shanxi 0 30006, China
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    References(35)

    [1] Schrödinger E. Discussion of probability relations between separated systems[J]. Mathematical Proceedings of the Cambridge Philosophical Society, 31, 555-563(1935).

    [2] Schrödinger E. Probability relations between separated systems[J]. Mathematical Proceedings of the Cambridge Philosophical Society, 32, 446-452(1936).

    [3] Einstein A, Podolsky B, Rosen N. Can quantum-mechanical description of physical reality be considered complete?[J]. Physical Review, 47, 777-780(1935).

    [4] Wiseman H M, Jones S J, Doherty A C. Steering, entanglement, nonlocality, and the Einstein-Podolsky-Rosen paradox[J]. Physical Review Letters, 98, 140402(2007).

    [5] Horodecki R, Horodecki P, Horodecki M et al. Quantum entanglement[J]. Reviews of Modern Physics, 81, 865-942(2009).

    [6] Bell J S. On the Einstein Podolsky Rosen paradox[J]. Physics Physique Fizika, 1, 195-200(1964).

    [8] Branciard C, Cavalcanti E G, Walborn S P et al. One-sided device-independent quantum key distribution: security, feasibility, and the connection with steering[J]. Physical Review A, 85, 010301(2012).

    [9] He Y F, Li C Y, Guo J R et al. Passive measurement-device-independent quantum key distribution based on heralded pair coherent states[J]. Chinese Journal of Lasers, 47, 0912002(2020).

    [10] He Y F, Zhao Y K, Li C Y et al. Measurement-device-independent quantum key distribution of finite detector’s dead time in heralded pair coherent state[J]. Acta Optica Sinica, 40, 2427001(2020).

    [11] Reid M D. Signifying quantum benchmarks for qubit teleportation and secure quantum communication using Einstein-Podolsky-Rosen steering inequalities[J]. Physical Review A, 88, 062338(2013).

    [12] He Q Y, Rosales-Zárate L, Adesso G et al. Secure continuous variable teleportation and Einstein-Podolsky-Rosen steering[J]. Physical Review Letters, 115, 180502(2015).

    [13] Xiang Y, Kogias I, Adesso G et al. Multipartite Gaussian steering: monogamy constraints and quantum cryptography applications[J]. Physical Review A, 95, 010101(2017).

    [14] Händchen V, Eberle T, Steinlechner S et al. Observation of one-way Einstein-Podolsky-Rosen steering[J]. Nature Photonics, 6, 596-599(2012).

    [15] He Q Y, Reid M D. Genuine multipartite Einstein-Podolsky-Rosen steering[J]. Physical Review Letters, 111, 250403(2013).

    [16] Armstrong S J, Wang M, Teh R Y et al. Multipartite Einstein-Podolsky-Rosen steering and genuine tripartite entanglement with optical networks[J]. Nature Physics, 11, 167-172(2015).

    [18] Hillery M, Bužek V, Berthiaume A. Quantum secret sharing[J]. Physical Review A, 59, 1829-1834(1999).

    [19] Tittel W, Zbinden H, Gisin N. Experimental demonstration of quantum secret sharing[J]. Physical Review A, 63, 042301(2001).

    [20] Xiao L, Long G L, Deng F G et al. Efficient multiparty quantum-secret-sharing schemes[J]. Physical Review A, 69, 052307(2004).

    [21] Guo G P, Guo G C. Quantum secret sharing without entanglement[J]. Physics Letters A, 310, 247-251(2003).

    [22] Tyc T, Sanders B C. How to share a continuous-variable quantum secret by optical interferometry[J]. Physical Review A, 65, 042310(2002).

    [23] Lance A M, Symul T, Bowen W P et al. Continuous variable (2, 3) threshold quantum secret sharing schemes[J]. New Journal of Physics, 5, 4(2003).

    [24] Lance A M, Symul T, Bowen W P et al. Tripartite quantum state sharing[J]. Physical Review Letters, 92, 177903(2004).

    [25] Žukowski M, Zeilinger A, Horne M A et al. “Event-ready-detectors” Bell experiment via entanglement swapping[J]. Physical Review Letters, 71, 4287-4290(1993).

    [26] Polkinghorne R E S, Ralph T C. Continuous variable entanglement swapping[J]. Physical Review Letters, 83, 2095-2099(1999).

    [27] Tan S M. Confirming entanglement in continuous variable quantum teleportation[J]. Physical Review A, 60, 2752-2758(1999).

    [28] Ralph T C. Continuous variable quantum cryptography[J]. Physical Review A, 61, 010303(1999).

    [29] Zhang J, Xie C D, Peng K C. Entanglement swapping using nondegenerate optical parametric amplifier[J]. Physics Letters A, 299, 427-432(2002).

    [30] Duan L M, Lukin M D, Cirac J I et al. Long-distance quantum communication with atomic ensembles and linear optics[J]. Nature, 414, 413-418(2001).

    [32] Wang M H, Qin Z Z, Su X L. Swapping of Gaussian Einstein-Podolsky-Rosen steering[J]. Physical Review A, 95, 052311(2017).

    [33] Wang M H, Qin Z Z, Wang Y et al. Einstein-Podolsky-Rosen-steering swapping between two Gaussian multipartite entangled states[J]. Physical Review A, 96, 022307(2017).

    [34] Zhai S Q, Yuan N, Li Q. Asymmetric bipartite EPR steering swapping characteristics of continuous variable[J]. Acta Optica Sinica, 40, 0427001(2020).

    [35] Kogias I, Lee A R, Ragy S et al. Quantification of Gaussian quantum steering[J]. Physical Review Letters, 114, 060403(2015).

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    Shuqin Zhai, Nan Yuan, Kui Liu. EPR Quantum Steering Switch Based on Entanglement Swapping[J]. Acta Optica Sinica, 2021, 41(16): 1627002

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    Paper Information

    Category: Quantum Optics

    Received: Dec. 15, 2020

    Accepted: Mar. 18, 2021

    Published Online: Aug. 12, 2021

    The Author Email: Zhai Shuqin (xiaozhai@sxu.edu.cn)

    DOI:10.3788/AOS202141.1627002

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