Chinese Optics Letters, Volume. 17, Issue 3, 032702(2019)

Enhancing coupling coefficient in a hybrid nanotoroid–nanowire system Editors' Pick

Qi Zhang1, Juanjuan Ren1, Xueke Duan1, He Hao1, Qihuang Gong1,2, and Ying Gu1,2、*
Author Affiliations
  • 1State Key Laboratory for Mesoscopic Physics, Department of Physics, Peking University, Beijing 100871, China
  • 2Collaborative Innovation Center of Quantum Matter, Beijing 100871, China
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    Figures & Tables(4)
    Nanotoroid–nanowire system. (a) Schematic diagram of a dielectric nanotoroid close to a dielectric nanowire. (b) Electric field distribution of the nanostructure. Details of electric field distributions of the same size nanotoroid (c) without and (d) with nanowire with parameters R=500 nm, r=170 nm, d=5 nm, ϵ1=12, ϵ2=5, D=100 nm, and working wavelength λ=524.693 nm.
    Mechanism of enhancing the coupling coefficient g and maintaining comparatively low cavity loss κ. (a) The variation of the coupling coefficient g along the X axis. g=588.69 GHz with nanowire and g=106.07 GHz without nanowire, respectively. (b) The variation of the normalized energy of the cavity modes Wcav with the wavelength λ. κ=70.34 GHz with nanowire and κ=64.68 GHz without nanowire, respectively.
    Results of the coupling coefficient g influenced by relevant parameters. (a), (b) g increases with the growth of ϵ1 and ϵ2. (c) g increases with the shortening of d.
    Results of coupling coefficient g and cavity loss κ in the nanotoroid–Ag-nanowire system. (a) The variation of the coupling coefficient g along the X axis. At the interface of the nanogap and the nanowire, the coupling coefficient g can reach its maximum g=689.40 GHz. Inset in (a) shows the electric field distributions of the WGMs of the nanotoroid and the surface plasmon polariton of the nanowire. (b) Normalized energy of the cavity modes Wcav changes with wavelength λ. κ=2814.57 GHz with Ag nanowire.
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    Qi Zhang, Juanjuan Ren, Xueke Duan, He Hao, Qihuang Gong, Ying Gu. Enhancing coupling coefficient in a hybrid nanotoroid–nanowire system[J]. Chinese Optics Letters, 2019, 17(3): 032702

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    Paper Information

    Category: Quantum optics

    Received: Sep. 4, 2018

    Accepted: Dec. 7, 2018

    Published Online: Mar. 8, 2019

    The Author Email: Ying Gu (ygu@pku.edu.cn)

    DOI:10.3788/COL201917.032702

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