Aerosol Classification from High Spectral Resolution Lidar Measurements
S. P. Burton(Langley Research Center), R. R. Rogers(Lord Fairfax Community College), A. L. Cook(Langley Research Center), Timothy A. Berkoff(Langley Research Center), Michael Kahnert(Swedish Meteorological and Hydrological Institute), Marta A. Fenn(Coherent (United States)), C. A. Hostetler(Langley Research Center), J. E. Collins(Langley Research Center), J. W. Hair(Langley Research Center), R. A. Ferrare(Langley Research Center), David B. Harper(Georgia Institute of Technology), Mark Vaughan(Langley Research Center), Shane T. Seaman(Langley Research Center)
2015 AGU Fall Meeting
December 15, 2015
Cited by 0
Related Papers
Airborne High Spectral Resolution Lidar for profiling aerosol optical properties
|Applied Optics|2008|694
Aerosol classification using airborne High Spectral Resolution Lidar measurements – methodology and examples
|Atmospheric measurement techniques|2012|648
Composite global emissions of reactive chlorine from anthropogenic and natural sources: Reactive Chlorine Emissions Inventory
|Journal of Geophysical Research Atmospheres|1999|405
Observations of the spectral dependence of linear particle depolarization ratio of aerosols using NASA Langley airborne High Spectral Resolution Lidar
|Atmospheric chemistry and physics|2015|317
Fluorine-containing natural products
|Journal of Fluorine Chemistry|1999|313