Ozone Research with Advanced Cooperative Lidar Experiment (ORACLE) Implementation Study
John H. Stadler, E. V. Browell, Syed Ismail, Alexander E. Dudelzak, D. Ball
Abstract
John H. Stadler, E. V. Browell, Syed Ismail, Alexander E. Dudelzak, D. Ball
Abstract
New technological advances have made possible new active remote sensing capabilities from space. Utilizing these technologies, the Ozone Research with Advanced Cooperative Lidar Experiment (ORACLE) will provide high spatial resolution measurements of ozone, clouds and aerosols in the stratosphere and lower troposphere. Simultaneous measurements of ozone, clouds and aerosols will assist in the understanding of global change, atmospheric chemistry and meteorology.
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New technological advances have made possible new active remote sensing capabilities from space. Utilizing these technologies, the Ozone Research with Advanced Cooperative Lidar Experiment (ORACLE) will provide high spatial resolution measurements of ozone, clouds and aerosols in the stratosphere and lower troposphere. Simultaneous measurements of ozone, clouds and aerosols will assist in the understanding of global change, atmospheric chemistry and meteorology.
Key concepts: Lidar, Stratosphere, Ozone, Tropospheric ozone, Environmental science, Meteorology, Troposphere, Remote sensing