A mobile differential absorption lidar for simultaneous observations of tropospheric and stratospheric ozone over Tibet
Xin Fang, Tao Li, Chao Ban, Zhaopeng Wu, Jing Li, Feng Li, Yetao Cen, Baogang Tian
University of Science and Technology of China Chinese Academy of Sciences Institute of Atmospheric Physics Sun Yat-sen University
内容与影响
Raman return signals at 332 nm and 387 nm shifted from 308 nm and 355 nm, respectively. An assembled telescope array with four 1.25-m telescopes (effective diameter > 2 m) collects the Rayleigh and Raman backscattering signals at 308/332 and 355/387 nm. This system is currently deployed at the Yangbajing Observatory in Tibet (~4300 m elevation) and has begun observations in regular campaign mode since October 2017. The lidar results agree very well with those observed by the Aura/MLS satellite. This novel ozone lidar system operates at the highest elevation of any such system in the world. The higher elevation and larger receiver aperture of this system yield a higher signal-to-noise ratio and lower statistical uncertainty.
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物理Atmospheric Ozone and Climate
Atmospheric and Environmental Gas Dynamics · Atmospheric chemistry and aerosols
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