• Chinese Optics Letters
  • Vol. 22, Issue 3, 031903 (2024)
Jiefu Zhu1, Tingting Ding2, Xuerui Sun1, Fengchao Ni1, Hao Li1, Shijie Liu1, Yuanlin Zheng1、3、*, and Xianfeng Chen1、3、4、**
Author Affiliations
  • 1State Key Laboratory of Advanced Optical Communication Systems and Networks, School of Physics and Astronomy, Shanghai Jiao Tong University, Shanghai 200240, China
  • 2School of Electronic and Electrical Engineering, Shanghai University of Engineering Science, Shanghai 201620, China
  • 3Shanghai Research Center for Quantum Sciences, Shanghai 201315, China
  • 4Collaborative Innovation Center of Light Manipulations and Applications, Shandong Normal University, Jinan 250358, China
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    DOI: 10.3788/COL202422.031903 Cite this Article Set citation alerts
    Jiefu Zhu, Tingting Ding, Xuerui Sun, Fengchao Ni, Hao Li, Shijie Liu, Yuanlin Zheng, Xianfeng Chen. Broadband second-harmonic generation in thin-film lithium niobate microdisk via cyclic quasi-phase matching[J]. Chinese Optics Letters, 2024, 22(3): 031903 Copy Citation Text show less
    (a) Effective nonlinear coefficient d33 varies with the azimuthal angle θ in an x-cut TFLN microdisk; (b) false-colored SEM images of the TFLN microdisk viewed at different angles.
    Fig. 1. (a) Effective nonlinear coefficient d33 varies with the azimuthal angle θ in an x-cut TFLN microdisk; (b) false-colored SEM images of the TFLN microdisk viewed at different angles.
    (a) Schematic of the experimental setup; (b) transmission spectrum of the TFLN microdisk. (c), (d) Lorentzian fitting of the resonances at 1563.3 and 781.7 nm, revealing a loaded Q factor of 3.32 × 107 and 2.83 × 106, respectively.
    Fig. 2. (a) Schematic of the experimental setup; (b) transmission spectrum of the TFLN microdisk. (c), (d) Lorentzian fitting of the resonances at 1563.3 and 781.7 nm, revealing a loaded Q factor of 3.32 × 107 and 2.83 × 106, respectively.
    Experimental results of SHG in the TFLN microdisk. (a) Spectrum of the SHG and cTHG; (b) SH power as a function of the cw pump.
    Fig. 3. Experimental results of SHG in the TFLN microdisk. (a) Spectrum of the SHG and cTHG; (b) SH power as a function of the cw pump.
    Experimental results of broadband SHG in the TFLN microdisk using tunable cw pump. (a), (b) Spectra of broadband SHG with a wavelength interval of 1 and 0.1 nm, respectively.
    Fig. 4. Experimental results of broadband SHG in the TFLN microdisk using tunable cw pump. (a), (b) Spectra of broadband SHG with a wavelength interval of 1 and 0.1 nm, respectively.
    Experimental results of the broadband SHG pumped by fs, SC laser, and ASE in the TFLN microdisk. (a) Spectra of the fs laser before and after coupling into the microdisk; (b) broadband SHG of fs laser; (c) SH power varies with respect to the incident fs pump. (d) Spectra of the SC laser before and after coupling into the microdisk; (e) broadband SHG of the SC laser; (f) SH power varies with respect to the incident SC pump. (g) Spectra of the ASE before and after coupling into the microdisk; (h) broadband SHG of ASE; (i) SH power varies with respect to the incident ASE pump.
    Fig. 5. Experimental results of the broadband SHG pumped by fs, SC laser, and ASE in the TFLN microdisk. (a) Spectra of the fs laser before and after coupling into the microdisk; (b) broadband SHG of fs laser; (c) SH power varies with respect to the incident fs pump. (d) Spectra of the SC laser before and after coupling into the microdisk; (e) broadband SHG of the SC laser; (f) SH power varies with respect to the incident SC pump. (g) Spectra of the ASE before and after coupling into the microdisk; (h) broadband SHG of ASE; (i) SH power varies with respect to the incident ASE pump.
    Jiefu Zhu, Tingting Ding, Xuerui Sun, Fengchao Ni, Hao Li, Shijie Liu, Yuanlin Zheng, Xianfeng Chen. Broadband second-harmonic generation in thin-film lithium niobate microdisk via cyclic quasi-phase matching[J]. Chinese Optics Letters, 2024, 22(3): 031903
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