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Airborne High Spectral Resolution Lidar for profiling aerosol optical properties

Applied Optics · 2008 · Vol. 47(36) · pp. 6734–6734
Johnathan W. HairC. A. HostetlerAnthony L. CookDavid B. HarperR. A. FerrareTerry L. MackWayne WelchLuis Ramos IzquierdoFloyd E. Hovis

Abstract

A compact, highly robust airborne High Spectral Resolution Lidar (HSRL) that provides measurements of aerosol backscatter and extinction coefficients and aerosol depolarization at two wavelengths has been developed, tested, and deployed on nine field experiments (over 650 flight hours). A unique and advantageous design element of the HSRL system is the ability to radiometrically calibrate the instrument internally, eliminating any reliance on vicarious calibration from atmospheric targets for which aerosol loading must be estimated. This paper discusses the design of the airborne HSRL, the internal calibration and accuracy of the instrument, data products produced, and observations and calibration data from the first two field missions: the Joint Intercontinental Chemical Transport Experiment--Phase B (INTEX-B)/Megacity Aerosol Experiment--Mexico City (MAX-Mex)/Megacities Impacts on Regional and Global Environment (MILAGRO) field mission (hereafter MILAGRO) and the Gulf of Mexico Atmospheric Composition and Climate Study/Texas Air Quality Study II (hereafter GoMACCS/TexAQS II).

Atmospheric aerosols and cloudsAtmospheric chemistry and aerosolsAtmospheric and Environmental Gas DynamicsLidarAerosolRemote sensingEnvironmental scienceAtmospheric opticsCalibrationBackscatter (email)Spectral resolutionRadiometric calibrationMeteorology
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The CALIPSO Mission
Bulletin of the American Meteorological Society · 2010 · 1,266 citations
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