Infrared and Laser Engineering, Volume. 49, Issue 8, 20190501(2020)

Opto-mechanical system structure and research progress of space-borne lidar for cloud-aerosol

Lu Li1, Chenbo Xie2, Peng Zhuang2, Kunming Xing2, Zhiyuan Fang2, Yufei Chu2, Jiadi Shao2, and Bangxin Wang2、*
Author Affiliations
  • 1Key Laboratory of Atmospheric Optics, Anhui institute of Optics and Fine Mechanics, HFIPS, Chinese Academy of Sciences, Hefei 230031, China
  • 2Key Laboratory of Atmospheric Optics, Anhui institute of Optics and Fine Mechanics, HFIPS, Chinese Academy of Sciences, Hefei 230031, China
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    The aerosol radiative forcing effect mainly influences the balance of the Earth’s radiation through two pathways, namely aerosol-radiation interaction (ARI) and aerosol-cloud interaction (ACI). However, uncertainty in ACI is one of the most important uncertainties in the Earth’s radiation factor in the IPCC AR5 report. In the field of aerosol-cloud global detection, the detection capability and development direction of space-borne lidar for cloud-aerosol remote sensing plays an very important role to study the global aerosol-cloud distribution characteristics. Therefore, the application status of space-borne lidar for cloud-aerosol remote sensing was analyzed firstly, and the technical characteristics about the detection task, opto-mechanical system parameters, structure and materials of typical space-borne lidar for aerosol-cloud (LITE、CALIPSO、CATS and ATLID) were focused on. Secondly, the characteristics of each space-borne lidar for aerosol-cloud were compared and analyzed from the aspects of working mechanism, opto-mechanical system structure, applied materials and detection capabilities. The design features and methods of opto-mechanical system of space-borne lidar for aerosol-cloud were proposed. Finally, the technical characteristics and development direction of the current space-borne lidar for aerosol-cloud were analyzed. The technical direction and development suggestions for the development of space-borne lidar for cloud-aerosol were proposed in China.

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    Lu Li, Chenbo Xie, Peng Zhuang, Kunming Xing, Zhiyuan Fang, Yufei Chu, Jiadi Shao, Bangxin Wang. Opto-mechanical system structure and research progress of space-borne lidar for cloud-aerosol[J]. Infrared and Laser Engineering, 2020, 49(8): 20190501

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    Paper Information

    Category: 激光器与激光光学

    Received: Dec. 18, 2019

    Accepted: --

    Published Online: Dec. 31, 2020

    The Author Email: Wang Bangxin (bxwang@aiofm.ac.cn)

    DOI:10.3788/IRLA20190501

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