• Journal of Atmospheric and Environmental Optics
  • Vol. 13, Issue 5, 321 (2018)
Xiaomin TIAN1、2, Dong LIU1、*, Jiwei XU1、2, Zhenzhu WANG1, Bangxin WANG1, Decheng WU1, Zhiqing ZHONG1, Chenbo XIE1, and Yingjian WANG1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3969/j.issn.1673-6141.2018.05.001 Cite this Article
    TIAN Xiaomin, LIU Dong, XU Jiwei, WANG Zhenzhu, WANG Bangxin, WU Decheng, ZHONG Zhiqing, XIE Chenbo, WANG Yingjian. Review of Lidar Technology for Atmosphere Monitoring[J]. Journal of Atmospheric and Environmental Optics, 2018, 13(5): 321 Copy Citation Text show less

    Abstract

    With the advantages of fine temporal-spatial resolution, lidar has become a powerful tool for atmospheric monitoring. Atmospheric lidars can be classified due to the detection technology as Mie lidar, polarization lidar, Raman lidar, differential absorption lidar(DIAL), high spectral resolution lidar(HSRL), Rayleigh lidar, resonance fluorescence lidar and Doppler lidar. The principle of various lidars for detection of atmospheric aerosol and clouds, water vapor, temperature, wind, trace gases, greenhouse gases and pollution gases is described elaborately. The advantage and disadvantage of each technology is summarized, as well as development history and the trend of the lidar technology for atmosphere monitoring are also explored.
    TIAN Xiaomin, LIU Dong, XU Jiwei, WANG Zhenzhu, WANG Bangxin, WU Decheng, ZHONG Zhiqing, XIE Chenbo, WANG Yingjian. Review of Lidar Technology for Atmosphere Monitoring[J]. Journal of Atmospheric and Environmental Optics, 2018, 13(5): 321
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