Photonics Research, Volume. 10, Issue 8, 1909(2022)

Multi-channel multiplexing quantum teleportation based on the entangled sideband modes

Yimiao Wu1、†, Qingwei Wang1、†, Long Tian1,2、†, Xiaoli Zhang1, Jiawei Wang1, Shaoping Shi1, Yajun Wang1,2, and Yaohui Zheng1,2、*
Author Affiliations
  • 1State Key Laboratory of Quantum Optics and Quantum Optics Devices, Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, China
  • 2Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan 030006, China
  • show less
    References(56)

    [1] C. H. Bennett, G. Brassard, C. Crépeau, R. Jozsa, A. Peres, W. K. Wootters. Teleporting an unknown quantum state via dual classical and Einstein-Podolsky-Rosen channels. Phys. Rev. Lett., 70, 1895-1899(1993).

    [2] L. Vaidman. Teleportation of quantum states. Phys. Rev. A, 49, 1473-1476(1994).

    [3] A. Furusawa, J. L. Sørensen, S. L. Braunstein, C. A. Fuchs, H. J. Kimble, E. S. Polzik. Unconditional quantum teleportation. Science, 282, 706-709(1998).

    [4] T. C. Zhang, K. W. Goh, C. W. Chou, P. Lodahl, H. J. Kimble. Quantum teleportation of light beams. Phys. Rev. A, 67, 033802(2003).

    [5] S. L. Braunstein, H. J. Kimble. Teleportation of continuous quantum variables. Phys. Rev. Lett., 80, 869-872(1998).

    [6] N. Takei, T. Aoki, S. Koike, K.-I. Yoshino, K. Wakui, H. Yonezawa, T. Hiraoka, J. Mizuno, M. Takeoka, M. Ban, A. Furusawa. Experimental demonstration of quantum teleportation of a squeezed state. Phys. Rev. A, 72, 042304(2005).

    [7] S. Pirandola, J. Eisert, C. Weedbrook, A. Furusawa, S. L. Braunstein. Advances in quantum teleportation. Nat. Photonics, 9, 641-652(2015).

    [8] D. Bouwmeester, J.-W. Pan, K. Mattle, M. Eibl, H. Weinfurter, A. Zeilinger. Experimental quantum teleportation. Nature, 390, 575-579(1997).

    [9] F. Dell’Anno, S. D. Siena, L. Albano, F. Illuminati. Continuous-variable quantum teleportation with non-Gaussian resources. Phys. Rev. A, 76, 022301(2007).

    [10] T. C. Ralph. All-optical quantum teleportation. Opt. Lett., 24, 348-350(1999).

    [11] W. P. Bowen, N. Treps, B. C. Buchler, R. Schnabel, T. C. Ralph, H. A. Bachor, T. Symul, P. K. Lam. Experimental investigation of continuous-variable quantum teleportation. Phys. Rev. A, 67, 032302(2003).

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

    [13] K. S. Chou, J. Z. Blumoff, C. S. Wang, P. C. Reinhold, C. J. Axline, Y. Y. Gao, L. Frunzio, M. H. Devoret, L. Jiang, R. J. Schoelkopf. Deterministic teleportation of a quantum gate between two logical qubits. Nature, 561, 368-373(2018).

    [14] A. Furusawa, N. Takei. Quantum teleportation for continuous variables and related quantum information processing. Phys. Rep., 443, 97-119(2007).

    [15] J. Yoshikawa, Y. Miwa, A. Huck, U. L. Andersen, P. V. Loock, A. Furusawa. Demonstration of a quantum nondemolition sum gate. Phys. Rev. Lett., 101, 250501(2008).

    [16] P. V. Loock, S. L. Braunstein. Multipartite entanglement for continuous variables: a quantum teleportation network. Phys. Rev. Lett., 84, 3482-3485(2002).

    [17] X. Sun, Y. Wang, Y. Tian, Q. Wang, L. Tian, Y. Zheng, K. Peng. Deterministic and universal quantum squeezing gate with a teleportation-like protocol. Laser Photon. Rev., 16, 2100329(2022).

    [18] Q. Wang, Y. Wang, X. Sun, Y. Tian, W. Li, L. Tian, X. Yu, J. Zhang, Y. Zheng. Controllable continuous variable quantum state distributor. Opt. Lett., 46, 1844-1847(2021).

    [19] Z.-S. Yuan, Y.-A. Chen, B. Zhao, S. Chen, J. Schmiedmayer, J. W. Pan. Experimental demonstration of a BDCZ quantum repeater node. Nature, 454, 1098-1101(2008).

    [20] U. L. Andersen, T. C. Ralph. High-fidelity teleportation of continuous-variable quantum states using delocalized single photons. Phys. Rev. Lett., 111, 050504(2013).

    [21] S. Takeda, T. Mizuta, M. Fuwa, P. V. Loock, A. Furusawa. Deterministic quantum teleportation of photonic quantum bits by a hybrid technique. Nature, 500, 315-318(2013).

    [22] X.-L. Wang, X.-D. Cai, Z.-E. Su, M.-C. Chen, D. Wu, L. Li, N.-L. Liu, C.-Y. Lu, J.-W. Pan. Quantum teleportation of multiple degrees of freedom in a single photon. Nature, 518, 516-519(2015).

    [23] E. Lombardi, F. Sciarrino, S. Popescu, F. D. Martini. Teleportation of a vacuum–one-photon qubit. Phys. Rev. Lett., 88, 070402(2002).

    [24] J. F. Sherson, H. Krauter, R. K. Olsson, B. Julsgaard, K. Hammerer, I. Cirac, E. S. Polzik. Quantum teleportation between light and matter. Nature, 443, 557-560(2006).

    [25] H. Krauter, D. Salart, C. A. Muschik, J. M. Petersen, H. Shen, T. Fernholz, E. S. Polzik. Deterministic quantum teleportation between distant atomic objects. Nat. Phys., 9, 400-404(2013).

    [26] M. Riebe, H. Häffner, C. F. Roos, W. Hänsel, J. Benhelm, G. P. T. Lancaster, T. W. Körber, C. Becher, F. Schmidt-Kaler, D. F. V. James, R. Blatt. Deterministic quantum teleportation with atoms. Nature, 429, 734-737(2004).

    [27] S. Olmschenk, D. N. Matsukevich, P. Maunz, D. Hayes, L.-M. Duan, C. Monroe. Quantum teleportation between distant matter qubits. Science, 323, 486-489(2009).

    [28] L. Steffen, Y. Salathe, M. Oppliger, P. Kurpiers, M. Baur, C. Lang, C. Eichler, G. Puebla-Hellmann, A. Fedorov, A. Wallraff. Deterministic quantum teleportation with feed-forward in a solid state system. Nature, 500, 319-322(2013).

    [29] W. Pfaff, B. J. Hensen, H. Bernien, S. B. V. Dam, M. S. Blok, T. H. Taminiau, M. J. Tiggelman, R. N. Schouten, M. Markham, D. J. Twitchen, R. Hanson. Unconditional quantum teleportation between distant solid-state quantum bits. Science, 345, 532-535(2014).

    [30] M. Yukawa, H. Benichi, A. Furusawa. High-fidelity continuous-variable quantum teleportation toward multistep quantum operations. Phys. Rev. A, 77, 022314(2008).

    [31] Q. Wang, Y. Tian, W. Li, L. Tian, Y. Wang, Y. Zheng. High-fidelity quantum teleportation toward cubic phase gates beyond the no-cloning limit. Phys. Rev. A, 103, 062421(2021).

    [32] M. V. Larsen, X. Guo, C. R. Breum, J. S. Neergaard-Nielsen, U. L. Andersen. Fiber-coupled EPR-state generation using a single temporally multiplexed squeezed light source. npj Quantum Inf., 5, 46(2019).

    [33] M. Heurs, J. G. Webb, A. E. Dunlop, C. C. Harb, T. C. Ralph, E. H. Huntington. Multiplexed communication over a high-speed quantum channel. Phys. Rev. A, 81, 856-858(2010).

    [34] B. Hage, A. Samblowski, R. Schnabel. Towards Einstein-Podolsky-Rosen quantum channel multiplexing. Phys. Rev. A, 81, 062301(2010).

    [35] N. Bozinovic, Y. Yue, Y. Ren, M. Tue, P. Kristensen, H. Huang, A. E. Willner, S. Ramachandran. Terabit-scale orbital angular momentum mode division multiplexing in fibers. Science, 340, 1545-1548(2013).

    [36] H. Song, H. Yonezawa, K. B. Kuntz, M. Heurs, E. H. Huntington. Quantum teleportation in space and frequency using entangled pairs of photons from a frequency comb. Phys. Rev. A, 90, 042337(2014).

    [37] J. Roslund, R. M. de Araújo, S. Jiang, C. Fabre, N. Treps. Wavelength-multiplexed quantum networks with ultrafast frequency combs. Nat. Photonics, 8, 109-112(2014).

    [38] S. Wengerowsky, S. K. Joshi, F. Steinlechner, H. Hübel, R. Ursin. An entanglement-based wavelength-multiplexed quantum communication network. Nature, 564, 225-228(2018).

    [39] M. V. Larsen, X. Guo, C. R. Breum, J. S. Neergaard-Nielsen, U. L. Andersen. Deterministic generation of a two-dimensional cluster state. Science, 366, 369-372(2019).

    [40] N. C. Menicucci, P. V. Loock, M. Gu, C. Weedbrrook, T. C. Ralph, M. A. Nielsen. Universal quantum computation with continuous-variable cluster states. Phys. Rev. Lett., 97, 110501(2006).

    [41] S. Liu, Y. Lou, J. Jing. Orbital angular momentum multiplexed deterministic all-optical quantum teleportation. Nat. Commun., 11, 3875(2020).

    [42] Y. Chen, S. Liu, Y. Lou, J. Jing. Orbital angular momentum multiplexed quantum dense coding. Phys. Rev. Lett., 127, 093601(2021).

    [43] S. Liu, Y. Lou, Y. Chen, J. Jing. All-optical entanglement swapping. Phys. Rev. Lett., 128, 060503(2022).

    [44] J. Zhang. Einstein-Podolsky-Rosen sideband entanglement in broadband squeezed light. Phys. Rev. A, 67, 054302(2003).

    [45] S. Shi, L. Tian, Y. Wang, Y. Zheng, C. Xie, K. Peng. Demonstration of channel multiplexing quantum communication exploiting entangled sideband modes. Phys. Rev. Lett., 125, 070502(2020).

    [46] M. Chen, N. C. Menicucci, O. Pfister. Experimental realization of multipartite entanglement of 60 modes of a quantum optical frequency comb. Phys. Rev. Lett., 112, 120505(2014).

    [47] W. Yang, S. Shi, Y. Wang, W. Ma, Y. Zheng, K. Peng. Detection of stably bright squeezed light with the quantum noise reduction of 12.6  dB by mutually compensating the phase fluctuations. Opt. Lett., 42, 4553-4556(2017).

    [48] L. Tian, S.-P. Shi, Y.-H. Tian, Y.-H. Wang, Y. Zheng, K.-C. Peng. Resource reduction for simultaneous generation of two types of continuous variable nonclassical states. Front. Phys., 16, 21502(2021).

    [49] H. Vahlbruch, S. Chelkowski, B. Hage, A. Franzen, K. Danzmann, R. Schnabel. Coherent control of vacuum squeezing in the gravitational-wave detection band. Phys. Rev. Lett., 97, 011101(2006).

    [50] P. Barriga, C. Zhao, D. G. Blair. Optical design of a high power mode-cleaner for AIGO. Gen. Relativ. Gravit., 37, 1609-1619(2005).

    [51] E. H. Huntington, T. C. Ralph. Separating the quantum sidebands of an optical field. J. Opt. B, 4, 123-128(2002).

    [52] E. D. Black. An introduction to Pound–Drever–Hall laser frequency stabilization. Am. J. Phys., 69, 79-87(2001).

    [53] M. Huo, J. Qin, J. Cheng, Z. Yan, Z. Qin, X. Su, X. Jia, C. Xie, K. Peng. Deterministic quantum teleportation through fiber channels. Sci. Adv., 4, 9401(2018).

    [54] J.-R. Wang, Q.-W. Wang, L. Tian, J. Su, Y.-H. Zheng. A low-noise, high-SNR balanced homodyne detector for the bright squeezed state measurement in 1–100  kHz range. Chin. Phys. B, 29, 034205(2020).

    [55] S. L. Braunstein, C. A. Fuchs, H. J. Kimble, P. V. Loock. Quantum versus classical domains for teleportation with continuous variables. Phys. Rev. A, 64, 022321(2001).

    [56] W. K. Wootters, W. H. Zurek. A single quantum cannot be cloned. Nature, 299, 802-803(1982).

    Tools

    Get Citation

    Copy Citation Text

    Yimiao Wu, Qingwei Wang, Long Tian, Xiaoli Zhang, Jiawei Wang, Shaoping Shi, Yajun Wang, Yaohui Zheng, "Multi-channel multiplexing quantum teleportation based on the entangled sideband modes," Photonics Res. 10, 1909 (2022)

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Quantum Optics

    Received: Mar. 30, 2022

    Accepted: Jun. 14, 2022

    Published Online: Jul. 27, 2022

    The Author Email: Yaohui Zheng (yhzheng@sxu.edu.cn)

    DOI:10.1364/PRJ.459889

    Topics