The solar optical properties of Saharan mineral dust observed during the Saharan Mineral Dust Experiment (SAMUM) were explored based on measured size-number distributions and chemical composition. The size-resolved complex refractive index of the dust was derived with real parts of 1.51–1.55 and imaginary parts of 0.0008–0.006 at 550 nm wavelength. At this spectral range a single scattering albedo ωo and an asymmetry parameter g of about 0.8 were derived. These values were largely determined by the presence of coarse particles. Backscatter coefficients and lidar ratios calculated with Mie theory (spherical particles) were not found to be in agreement with independently measured lidar data. Obviously the measured Saharan mineral dust particl...
The Saharan Mineral Dust Experiment (SAMUM) 2006, Morocco, aimed at the characterization of optical,...
Ground-based high spectral resolution measurements of downwelling radiances from 800 to 1200 cm−1 we...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...
The solar optical properties of Saharan mineral dust observed during the Saharan Mineral Dust Experi...
During the SAMUM campaign comprehensive measurements were performed in May-June 2006 concerning the ...
Realistic size equivalence and shape of Saharan mineral dust particles are derived from in-situ part...
Realistic size equivalence and shape of Saharan mineral dust particles are derived from in-situ part...
Two comprehensive field campaigns were conducted in 2006 and 2008 in the framework of the Saharan Mi...
Published under the terms of the Creative Commons Attribution-Noncommercial 3.0 Unported LicenseTwo ...
Two comprehensive field campaigns were conducted in 2006 and 2008 in the framework of the Saharan Mi...
International audienceThis work will present aerosol size distributions measured in a Saharan dust p...
Mineral dust is a key player in the Earth system that affects the weather and climate through absorb...
In the framework of the Saharan Mineral Dust Experiment (SAMUM) for the first time the spectral depe...
We model lidar-relevant optical properties of mineral dust aerosols and compare the modelling result...
Two comprehensive field campaigns were conducted in 2006 and 2008 in the framework of the Saharan Mi...
The Saharan Mineral Dust Experiment (SAMUM) 2006, Morocco, aimed at the characterization of optical,...
Ground-based high spectral resolution measurements of downwelling radiances from 800 to 1200 cm−1 we...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...
The solar optical properties of Saharan mineral dust observed during the Saharan Mineral Dust Experi...
During the SAMUM campaign comprehensive measurements were performed in May-June 2006 concerning the ...
Realistic size equivalence and shape of Saharan mineral dust particles are derived from in-situ part...
Realistic size equivalence and shape of Saharan mineral dust particles are derived from in-situ part...
Two comprehensive field campaigns were conducted in 2006 and 2008 in the framework of the Saharan Mi...
Published under the terms of the Creative Commons Attribution-Noncommercial 3.0 Unported LicenseTwo ...
Two comprehensive field campaigns were conducted in 2006 and 2008 in the framework of the Saharan Mi...
International audienceThis work will present aerosol size distributions measured in a Saharan dust p...
Mineral dust is a key player in the Earth system that affects the weather and climate through absorb...
In the framework of the Saharan Mineral Dust Experiment (SAMUM) for the first time the spectral depe...
We model lidar-relevant optical properties of mineral dust aerosols and compare the modelling result...
Two comprehensive field campaigns were conducted in 2006 and 2008 in the framework of the Saharan Mi...
The Saharan Mineral Dust Experiment (SAMUM) 2006, Morocco, aimed at the characterization of optical,...
Ground-based high spectral resolution measurements of downwelling radiances from 800 to 1200 cm−1 we...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...