• Chinese Optics Letters
  • Vol. 18, Issue 1, 011402 (2020)
Chi Zhang1, Dongying Fu1, Chunli Xia1, Lishuang Yao2、3, Chunlian Lu1, Weimin Sun1, and Yongjun Liu1、2、*
Author Affiliations
  • 1Key Laboratory of In-fiber Integrated Optics, Ministry of Education, Harbin Engineering University, Harbin 150001, China
  • 2State Key Laboratory of Applied Optics, Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences, Changchun 130033, China
  • 3Department of Physics, College of Science, Shantou University, Shantou 515063, China
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    DOI: 10.3788/COL202018.011402 Cite this Article Set citation alerts
    Chi Zhang, Dongying Fu, Chunli Xia, Lishuang Yao, Chunlian Lu, Weimin Sun, Yongjun Liu. Lasing emission of dye-doped cholesteric liquid crystal microdroplet wrapped by polyglycerol in hollow glass microsphere[J]. Chinese Optics Letters, 2020, 18(1): 011402 Copy Citation Text show less
    Schematic diagram of the experimental setup. The insets are the microscopy images of the HGM filled with DDCLCs and a diglycerol layer (the left inset is an unpolarized image, the right inset is an orthogonal polarized image). Scale bar is 50 μm.
    Fig. 1. Schematic diagram of the experimental setup. The insets are the microscopy images of the HGM filled with DDCLCs and a diglycerol layer (the left inset is an unpolarized image, the right inset is an orthogonal polarized image). Scale bar is 50 μm.
    (a) Emission spectrum of the DDCLC-filled HGM. (b) The emission spectra of the DDCLC-filled HGM as a function of temperature. (c) The wavelength shift of the marked peaks as a function of temperature. The insets of (a) from left to right are, respectively, an unpolarized image, orthogonal polarized image, and excited image of the DDCLC-filled HGM. Scale bar is 20 μm.
    Fig. 2. (a) Emission spectrum of the DDCLC-filled HGM. (b) The emission spectra of the DDCLC-filled HGM as a function of temperature. (c) The wavelength shift of the marked peaks as a function of temperature. The insets of (a) from left to right are, respectively, an unpolarized image, orthogonal polarized image, and excited image of the DDCLC-filled HGM. Scale bar is 20 μm.
    (a) Emission spectrum of a resonator with a well-formed 60 μm diameter DDCLC microdroplet. (b) The relationship between the diameter of DDCLC microdroplet and the FSR of the WGM peaks. The insets of (a) are, respectively, an orthogonal polarized image and an excited image of the resonator. Scale bar is 30 μm.
    Fig. 3. (a) Emission spectrum of a resonator with a well-formed 60 μm diameter DDCLC microdroplet. (b) The relationship between the diameter of DDCLC microdroplet and the FSR of the WGM peaks. The insets of (a) are, respectively, an orthogonal polarized image and an excited image of the resonator. Scale bar is 30 μm.
    (a) Emission spectra of a resonator under different pump intensities. (b) Normalized threshold curve of PBG mode lasing. (c) Normalized threshold curve of WGM lasing.
    Fig. 4. (a) Emission spectra of a resonator under different pump intensities. (b) Normalized threshold curve of PBG mode lasing. (c) Normalized threshold curve of WGM lasing.
    (a) Emission spectra of a resonator with a 45 μm DDCLC microdroplet. (b) The wavelength shift of the marked WGM peak as the temperature increases. (c) The wavelength shift of the PBG mode peak as the temperature increases.
    Fig. 5. (a) Emission spectra of a resonator with a 45 μm DDCLC microdroplet. (b) The wavelength shift of the marked WGM peak as the temperature increases. (c) The wavelength shift of the PBG mode peak as the temperature increases.
    Emission spectra of a resonator excited at different positions. The inset is the schematic diagram of the excitation positions.
    Fig. 6. Emission spectra of a resonator excited at different positions. The inset is the schematic diagram of the excitation positions.
    Chi Zhang, Dongying Fu, Chunli Xia, Lishuang Yao, Chunlian Lu, Weimin Sun, Yongjun Liu. Lasing emission of dye-doped cholesteric liquid crystal microdroplet wrapped by polyglycerol in hollow glass microsphere[J]. Chinese Optics Letters, 2020, 18(1): 011402
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