Photonics Research, Volume. 7, Issue 6, 630(2019)

Nonreciprocal unconventional photon blockade in a spinning optomechanical system

Baijun Li1, Ran Huang1, Xunwei Xu2, Adam Miranowicz3,4,5, and Hui Jing1,6
Author Affiliations
  • 1Key Laboratory of Low-Dimensional Quantum Structures and Quantum Control of Ministry of Education, Department of Physics and Synergetic Innovation Center for Quantum Effects and Applications, Hunan Normal University, Changsha 410081, China
  • 2Department of Applied Physics, East China Jiaotong University, Nanchang 330013, China
  • 3Theoretical Quantum Physics Laboratory, RIKEN Cluster for Pioneering Research, Wako-shi, Saitama 351-0198, Japan
  • 4Faculty of Physics, Adam Mickiewicz University, 61-614 Poznan, Poland
  • 5e-mail: miran@amu.edu.pl
  • 6e-mail: jinghui73@gmail.com
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    References(101)

    [20] C. Zhai, R. Huang, B. Li, H. Jing, L.-M. Kuang. Mechanical engineering of photon blockades in a cavity optomechanical system(2019).

    [28] V. Savona. Unconventional photon blockade in coupled optomechanical systems(2013).

    [35] F. Zhou, D.-G. Lai, J.-Q. Liao. Photon blockade effect in a coupled cavity system(2018).

    [38] A. Miranowicz, W. Leoński, N. Imoto. Quantum-optical states in finite-dimensional Hilbert space. I. General formalism. Modern Nonlinear Optics, 119, 195-213(2001).

    [59] L. Tang, J. S. Tang, W. D. Zhang, G. W. Lu, Y. Zhang, K. Y. Xia, M. Xiao. An on-chip chiral single-photon interface: isolation and unidirectional emission(2018).

    [68] X.-W. Xu, Y.-J. Zhao, H. Wang, H. Jing, A.-X. Chen. Nonreciprocal photon blockade via quadratic optomechanical coupling(2018).

    [88] C. W. Gardiner, P. Zoller. Quantum Noise(2000).

    [89] D. F. Walls, G. J. Milburn. Quantum Optics(1994).

    [96] J. Hloušek, M. Dudka, I. Straka, M. Ježek. Accurate detection of arbitrary photon statistics(2018).

    [99] F. Reiter, T. L. Nguyen, J. P. Home, S. F. Yelin. Cooperative breakdown of the oscillator blockade in the Dicke model(2018).

    CLP Journals

    [1] Guo-Qing Qin, Min Wang, Jing-Wei Wen, Dong Ruan, Gui-Lu Long, "Brillouin cavity optomechanics sensing with enhanced dynamical backaction," Photonics Res. 7, 1440 (2019)

    [2] C. J. Zhu, K. Hou, Y. P. Yang, L. Deng, "Hybrid level anharmonicity and interference-induced photon blockade in a two-qubit cavity QED system with dipole–dipole interaction," Photonics Res. 9, 1264 (2021)

    [3] Xunwei Xu, Yanjun Zhao, Hui Wang, Aixi Chen, Yu-Xi Liu, "Nonreciprocal transition between two nondegenerate energy levels," Photonics Res. 9, 879 (2021)

    [4] Luqi Yuan, Avik Dutt, Mingpu Qin, Shanhui Fan, Xianfeng Chen, "Creating locally interacting Hamiltonians in the synthetic frequency dimension for photons," Photonics Res. 8, B8 (2020)

    [5] Hua-Jun Chen. Nonlinear optical effect and nonlinear optical mass sensor based on graphene optomechanical system[J]. Acta Physica Sinica, 2020, 69(13): 134203-1

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    Baijun Li, Ran Huang, Xunwei Xu, Adam Miranowicz, Hui Jing, "Nonreciprocal unconventional photon blockade in a spinning optomechanical system," Photonics Res. 7, 630 (2019)

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    Paper Information

    Category: Quantum Optics

    Received: Feb. 1, 2019

    Accepted: Mar. 19, 2019

    Published Online: May. 15, 2019

    The Author Email:

    DOI:10.1364/PRJ.7.000630

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