Chinese Journal of Lasers, Volume. 51, Issue 11, 1101011(2024)
Spaceborne Lidar Remote Sensing Progress and Developments (Invited)
[7] Kamalakar J A, Prasad A S, Bhaskar K V S et al. Design, development and performance of a laser ranging instrument onboard Chandrayaan-1[J]. Journal of Spacecraft Technology, 20, 13-24(2010).
[8] Kamalakar J, Prasad A, Bhaskar K V S et al. Lunar Laser Ranging Instrument (LLRI): a tool for the study of topography and gravitational field of the Moon[J]. Current Science, 96, 512-516(2009).
[17] Straume A G, Rennie M, Isaksen L et al. ESA’s space-based Doppler wind lidar mission Aeolus: first wind and aerosol product assessment results[J]. EPJ Web of Conferences, 237, 01007(2020).
[18] Chen W B, Liu J Q, Hou X et al. Lidar technology for atmosphere environment monitoring satellite[J]. Aerospace Shanghai (Chinese & English), 40, 13-20, 110(2023).
[39] Kawa S R, Abshire J B, Baker D F et al. Active sensing of CO2 emissions over nights, days, and seasons (ASCENDS): final report of the ASCENDS Ad Hoc science definition team: NASA/TP–2018-219034[R](2018).
[43] Caron J, Durand Y, Bensi P et al. A-SCOPE: objectives and concepts for an ESA mission to measure CO2 from space with a lidar[C](2009).
[51] Hu J B, Wang X, Zhao S H et al. Spaceborne high spectral resolution lidar for atmospheric aerosols and clouds profiles measurement[J]. Acta Optica Sinica, 43, 1899901(2023).
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Weibiao Chen, Jiqiao Liu, Xiaopeng Zhu, Decang Bi, Xia Hou. Spaceborne Lidar Remote Sensing Progress and Developments (Invited)[J]. Chinese Journal of Lasers, 2024, 51(11): 1101011
Category: laser devices and laser physics
Received: Mar. 5, 2024
Accepted: May. 21, 2024
Published Online: Jun. 20, 2024
The Author Email: Chen Weibiao (wbchen@siom.ac.cn), Liu Jiqiao (liujiqiao@siom.ac.cn)
CSTR:32183.14.CJL240655