• Journal of Atmospheric and Environmental Optics
  • Vol. 18, Issue 5, 426 (2023)
LIU Yuli1、*, WANG Yuru1, and XIE Chenbo2
Author Affiliations
  • 1Department of Physics and Chemistry, The Army Infantry Academy, Nanchang 330103, China
  • 2Key Laboratory of Atmospheric Optics, Anhui Institute of Optics and Fine Mechanics, HFIPS,Chinese Academy of Sciences, Hefei 230031, China
  • show less
    DOI: 10.3969/j.issn.1673-6141.2023.05.003 Cite this Article
    Yuli LIU, Yuru WANG, Chenbo XIE. Investigation of atmospheric refractive modification based on rotational Raman lidar[J]. Journal of Atmospheric and Environmental Optics, 2023, 18(5): 426 Copy Citation Text show less
    References

    [1] X Fang, M Wang, S X Hu. Distribution characteristics of atmospheric pollutions in meiyu season observed by lidar over Hefei. Chinese Journal of Lasers, 46, 0110003(2019).

    [2] M Wang, S X Hu, X Fang et al. Precise correction for the troposphere target location error based on lidar. Acta Physica Sinica, 58, 5091-5097(2009).

    [3] Y S Chen, X Y Wang. Study on mathematical model of atmospheric refraction error correction of photoelectric measurement information. Laser Journal, 42, 73-77(2021).

    [4] S G Li, J S Nie. Effect of atmospheric refraction to electro-optical reconnaissance and orientation. Infrared and Laser Engineering, 37, 170-173(2008).

    [5] Z F Song, Q Ding. Atmospheric refraction corrections for angle and altitude measured with laser. Laser Technology, 12, 8-13(1988).

    [6] X J Zhang, Z F Song, Z F Fu. Atmospheric refraction correction for laser ranging. Infrared and Laser Echnology, 3, 9-15(1987).

    [7] Z F Song, Q Ding. A model of atmospheric refraction-index profile for laser ranging. Chinese Journal of Quantum Electronics, 4, 334-340(1987).

    [8] X H Cheng. High precision modification to atmospheric refractive errors. Journal of University of Electronic Science and Technology of China, 25, 214-218(1996).

    [9] Y L Liu. Rotational Raman lidar for detecting temperature profiles in boundary layer. Laser Technology, 42, 541-544(2018).

    [10] J Y Jia, F Yi. Atmospheric temperature measurements at altitudes of 5-30 km with a double-grating-based pure rotational Raman lidar. Applied Optics, 53, 5330-5343(2014).

    [11] Y L Liu, C B Xie, Z Shang et al. Retrieval and analysis of atmospheric temperature using a rotational Raman lidar observation. Spectroscopy and Spectral Analysis, 36, 1978-1986(2016).

    [12] M Wang, S X Hu, J Su et al. Measurements of refractive profiles using a pure rotational Raman lidar in the lower-atmosphere. Chinese Journal of Lasers, 35, 1986-1991(2008).

    [13] G Kunz, E Heemskerk, L van Eijk. Comparison of atmospheric refraction at radar and optical wavelengths, 5981, 84-95(2005).

    [14] Z F Song. Fundamentals of Applied Atmospheric Optics, 1-2(1990).

    Yuli LIU, Yuru WANG, Chenbo XIE. Investigation of atmospheric refractive modification based on rotational Raman lidar[J]. Journal of Atmospheric and Environmental Optics, 2023, 18(5): 426
    Download Citation