Spaceborne lidar system for measurements of atmospheric water vapor and aerosols
E. V. Browell, Syed Ismail, M.Patrick McCormick, Thomas J. Swissler
Abstract
E. V. Browell, Syed Ismail, M.Patrick McCormick, Thomas J. Swissler
Abstract
The inclusion of a differential absorption lidar (DIAL) system as part of the NASA Earth Observing System (EOS) is proposed. Functioning at 720 nm, the DIAL could provide atmospheric water vapor profiles in the troposphere and stratosphere, and provide data for characterizing the physical properties of clouds. The use of frequency doubling of the laser could also open a window on the 355 nm region, and thereby molecular density and temperature profiles. The date would be of use in studies of the global hydrological cycle, the global radiation balance, climate, meteorology, and atmospheric structure and transport phenomena.
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The inclusion of a differential absorption lidar (DIAL) system as part of the NASA Earth Observing System (EOS) is proposed. Functioning at 720 nm, the DIAL could provide atmospheric water vapor profiles in the troposphere and stratosphere, and provide data for characterizing the physical properties of clouds. The use of frequency doubling of the laser could also open a window on the 355 nm region, and thereby molecular density and temperature profiles. The date would be of use in studies of the global hydrological cycle, the global radiation balance, climate, meteorology, and atmospheric structure and transport phenomena.
Key concepts: Troposphere, Lidar, Environmental science, Water vapor, Dial, Stratosphere, Atmospheric sciences, Meteorology