An intense mineral dust event from the Saharan desert was observed over the Island of Barbados after a long-range transport over the Atlantic Ocean during SALTRACE Campaign in June 2014. We analyze data from a multi-wavelength Raman-lidar system of Leibniz Institute for Tropospheric Research (TROPOS) called BERTHA (Back- scatter Extinction lidar Ratio Temperature Humidity profiling Apparatus) to derive the aerosol microphysical properties of the inspected layer via regularization using the software SphInX (Spheroidal Inversion eXperiments). These parameters were found to be within credible ranges
www.atmos-chem-phys.net/15/11067/2015/ doi:10.5194/acp-15-11067-2015 © Author(s) 2015. CC Attributio...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...
An intense mineral dust event from the Saharan desert was observed over the Island of Barbados after...
International audienceIn this work we present an analysis of mineral dust optical and microphysical ...
International audienceIn this work we present an analysis of aerosol microphysical properties during...
West Africa and the adjacent oceanic regions are very important locations for studying dust propert...
The Raman lidar system BASIL was operational in Achern (Black Forest) between 25 May and 30 August 2...
The Raman lidar system BASIL was operational in Achern (Black Forest) between 25 May and 30 August 2...
Dual-wavelength Raman and depolarization lidar observations were performed during the Saharan Aeroso...
A unique data set of ship-borne lidar measurements of Saharan dust layers above the Atlantic ocean h...
The Raman lidar system BASIL was operational in Achern (Black Forest) between 25 May and 30 August 2...
We present final and quality-assured results of multiwavelength polarization/Raman lidar observation...
We present final and quality-assured results of multiwavelength polarization/Raman lidar observatio...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...
www.atmos-chem-phys.net/15/11067/2015/ doi:10.5194/acp-15-11067-2015 © Author(s) 2015. CC Attributio...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...
An intense mineral dust event from the Saharan desert was observed over the Island of Barbados after...
International audienceIn this work we present an analysis of mineral dust optical and microphysical ...
International audienceIn this work we present an analysis of aerosol microphysical properties during...
West Africa and the adjacent oceanic regions are very important locations for studying dust propert...
The Raman lidar system BASIL was operational in Achern (Black Forest) between 25 May and 30 August 2...
The Raman lidar system BASIL was operational in Achern (Black Forest) between 25 May and 30 August 2...
Dual-wavelength Raman and depolarization lidar observations were performed during the Saharan Aeroso...
A unique data set of ship-borne lidar measurements of Saharan dust layers above the Atlantic ocean h...
The Raman lidar system BASIL was operational in Achern (Black Forest) between 25 May and 30 August 2...
We present final and quality-assured results of multiwavelength polarization/Raman lidar observation...
We present final and quality-assured results of multiwavelength polarization/Raman lidar observatio...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...
www.atmos-chem-phys.net/15/11067/2015/ doi:10.5194/acp-15-11067-2015 © Author(s) 2015. CC Attributio...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...
Nearly pure Saharan dust was observed with an Aerosol Robotic Network (AERONET) Sun photometer, seve...