Applied Optics · 2008 · 34 citations · 32 references
RadarSynthetic ApsdHigh Temperature AerosolEngineeringAerosol FormationOptical Particle SizingAerospace EngineeringAtmospheric ScienceSynthetic Aperture RadarAerosol SamplingDroplet AerosolRemote SensingLidar EquationsSpherical DropletsAir PollutionMultiwavelength Lidar Signals
A method of retrieval of the aerosol particle size distribution (APSD) from multiwavelength lidar signals is presented. Assumed distribution (usually a bimodal combination of lognormal functions) with a few free parameters is directly substituted into the lidar equations. The minimization technique allows one to find the parameters that provide the best fit of the assumed APSD by comparison of theoretically generated and experimental signals. Prior knowledge of the lidar ratio is not required. The approach was tested on a typical synthetic APSD consisting of spherical droplets. Comparison of lidar measurements with results from a condensation particle counter was also performed. For signals registered at 3-5 wavelengths from the UV to the near IR a satisfactory retrieval of synthetic APSD is possible for the particles within the 100-3000 nm range.
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Analysis of atmospheric lidar observations: some comments
F. G. Fernald · Applied Optics · 1984 · 2K citations
Stable analytical inversion solution for processing lidar returns
James D. Klett · Applied Optics · 1981 · 1.6K citations
On Rayleigh Optical Depth Calculations
Barry A. Bodhaine, Norman B. Wood, Ellsworth G Dutton et al. · Journal of Atmospheric and Oceanic Technology · 1999 · 746 citations · Full text