• Chinese Optics Letters
  • Vol. 21, Issue 3, 030101 (2023)
Fei Gao1, Fengjia Gao1, Xiao Yang1, Gaipan Li1, Fan Yang1, Shichun Li1, Li Wang1, Dengxin Hua1、*, and Samo Stanič2
Author Affiliations
  • 1School of Mechanical and Precision Instrument Engineering, Xi’an University of Technology, Xi’an 710048, China
  • 2Center for Atmospheric Research, University of Nova Gorica, SI-5000 Nova Gorica, Slovenia
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    DOI: 10.3788/COL202321.030101 Cite this Article Set citation alerts
    Fei Gao, Fengjia Gao, Xiao Yang, Gaipan Li, Fan Yang, Shichun Li, Li Wang, Dengxin Hua, Samo Stanič. Accurate measurement of aerosol optical properties using the multilongitudinal mode high-spectral-resolution lidar with self-tuning Mach–Zehnder interferometer[J]. Chinese Optics Letters, 2023, 21(3): 030101 Copy Citation Text show less
    Schematic diagram of the multilongitudinal mode HSRL system: (a) spectrum of the MLM laser; (b) spectrum of the MLM echo signal; (c) output spectrum of the Mie channel of the MZI; (d) output spectrum of the Rayleigh channel of the MZI.
    Fig. 1. Schematic diagram of the multilongitudinal mode HSRL system: (a) spectrum of the MLM laser; (b) spectrum of the MLM echo signal; (c) output spectrum of the Mie channel of the MZI; (d) output spectrum of the Rayleigh channel of the MZI.
    Relationship between the effective transmittance of the Mie channel for Mie scattering signals and the OPD of the MZI. (a) For the first condition of the matching degree between the MZI OPD and the laser optical cavity length; (b) for the second condition of the matching degree between the MZI OPD and laser wavelength.
    Fig. 2. Relationship between the effective transmittance of the Mie channel for Mie scattering signals and the OPD of the MZI. (a) For the first condition of the matching degree between the MZI OPD and the laser optical cavity length; (b) for the second condition of the matching degree between the MZI OPD and laser wavelength.
    (a) Functional diagram and (b) flow chart of the MLM-HSRL with a self-tuning MZI.
    Fig. 3. (a) Functional diagram and (b) flow chart of the MLM-HSRL with a self-tuning MZI.
    PΔ distribution from the preliminary experiments by the MLM-HSRL with the fixed OPD MZI performed from 19:30 CST to 21:05 CST on March 9, 2022. (a) THI contour diagram of PΔ; (b) statistics diagram of PΔ.
    Fig. 4. PΔ distribution from the preliminary experiments by the MLM-HSRL with the fixed OPD MZI performed from 19:30 CST to 21:05 CST on March 9, 2022. (a) THI contour diagram of PΔ; (b) statistics diagram of PΔ.
    PΔ distribution from the preliminary experiments by the MLM-HSRL with the dynamic OPD MZI performed from 21:30 CST to 22:55 CST on March 9, 2022. (a) THI contour diagram of PΔ; (b) statistics diagram of PΔ.
    Fig. 5. PΔ distribution from the preliminary experiments by the MLM-HSRL with the dynamic OPD MZI performed from 21:30 CST to 22:55 CST on March 9, 2022. (a) THI contour diagram of PΔ; (b) statistics diagram of PΔ.
    Example of the preliminary experimental data using the MLM-HSRL and the retrieval results of aerosol optical properties during a clear weather condition performed at 21:50 CST on March 12, 2022. (a) Profile of RSCS data; (b) profile of βa(r); (c) profile of αa(r); (d) profile of lidar ratio.
    Fig. 6. Example of the preliminary experimental data using the MLM-HSRL and the retrieval results of aerosol optical properties during a clear weather condition performed at 21:50 CST on March 12, 2022. (a) Profile of RSCS data; (b) profile of βa(r); (c) profile of αa(r); (d) profile of lidar ratio.
    Example of the preliminary experimental data using the MLM-HSRL and the retrieved results of aerosol optical properties during a cloudy weather condition performed at 21:20 CST on April 13, 2022. (a) Profile of RSCS data; (b) profile of βa(r); (c) profile of αa(r); (d) profile of lidar ratio.
    Fig. 7. Example of the preliminary experimental data using the MLM-HSRL and the retrieved results of aerosol optical properties during a cloudy weather condition performed at 21:20 CST on April 13, 2022. (a) Profile of RSCS data; (b) profile of βa(r); (c) profile of αa(r); (d) profile of lidar ratio.
    THI diagram of the retrieval results of aerosol optical properties from 21:30 CST to 22:55 CST on March 9, 2022. (a) βa(r); (b) αa(r).
    Fig. 8. THI diagram of the retrieval results of aerosol optical properties from 21:30 CST to 22:55 CST on March 9, 2022. (a) βa(r); (b) αa(r).
    Fei Gao, Fengjia Gao, Xiao Yang, Gaipan Li, Fan Yang, Shichun Li, Li Wang, Dengxin Hua, Samo Stanič. Accurate measurement of aerosol optical properties using the multilongitudinal mode high-spectral-resolution lidar with self-tuning Mach–Zehnder interferometer[J]. Chinese Optics Letters, 2023, 21(3): 030101
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