© Author(s) 2019.Absorption aerosol optical depth (AAOD) as obtained from sun–sky photometer measurements provides a measure of the light-absorbing properties of the columnar aerosol loading. However, it is not an unambiguous aerosol-type-specific parameter, particularly if several types of absorbing aerosols, for instance black carbon (BC) and mineral dust, are present in a mixed aerosol plume. The contribution of mineral dust to total aerosol light absorption is particularly important at UV wavelengths. In this study we refine a lidar-based technique applied to the separation of dust and non-dust aerosol types for the use with Aerosol Robotic Network (AERONET) direct sun and inversion products. We extend the methodology to retrieve AAOD r...
The particle mixing state plays a significant yet poorly quantified role in aerosol radiative forci...
AbstractWe present an aerosol classification based upon AERONET level 2.0 almucantar retrieval produ...
Atmospheric aerosol distributions from 2000 to 2007 are simulated with the Goddard Chemistry Aeroso...
Absorption aerosol optical depth (AAOD) as obtained from sun–sky photometer measurements provides a ...
© Author(s) 2019. This work is distributed under the Creative Commons Attribution 4.0 License.This s...
We use the radiative transfer model and chemistry transport model to improve our retrievals of dust ...
Partitioning of mineral dust, pollution, smoke, and mixtures using remote sensing techniques can hel...
Asian dust particulate is one of the primary aerosol constituents in the Earth-atmosphere system tha...
Black carbon (BC) absorption aerosol optical depth (AAODBC) defines the contribution of BC in light ...
Extremely fine liquid droplets or solid particles, those remain suspended in the air, are known as a...
The particle mixing state plays a significant yet poorly quantified role in aerosol radiative forcin...
The particle mixing state plays a significant yet poorly quantified role in aerosol radiative forcin...
Knowledge of the particle lidar ratio (Sγ) and the particle linear depolarisation ratio (δγ) for dif...
Here we present new results comparing aerosol optical depth (AOD), aerosol absorption optical depth ...
Recent results from diverse air, ground, and laboratory studies using both radiometric and in situ t...
The particle mixing state plays a significant yet poorly quantified role in aerosol radiative forci...
AbstractWe present an aerosol classification based upon AERONET level 2.0 almucantar retrieval produ...
Atmospheric aerosol distributions from 2000 to 2007 are simulated with the Goddard Chemistry Aeroso...
Absorption aerosol optical depth (AAOD) as obtained from sun–sky photometer measurements provides a ...
© Author(s) 2019. This work is distributed under the Creative Commons Attribution 4.0 License.This s...
We use the radiative transfer model and chemistry transport model to improve our retrievals of dust ...
Partitioning of mineral dust, pollution, smoke, and mixtures using remote sensing techniques can hel...
Asian dust particulate is one of the primary aerosol constituents in the Earth-atmosphere system tha...
Black carbon (BC) absorption aerosol optical depth (AAODBC) defines the contribution of BC in light ...
Extremely fine liquid droplets or solid particles, those remain suspended in the air, are known as a...
The particle mixing state plays a significant yet poorly quantified role in aerosol radiative forcin...
The particle mixing state plays a significant yet poorly quantified role in aerosol radiative forcin...
Knowledge of the particle lidar ratio (Sγ) and the particle linear depolarisation ratio (δγ) for dif...
Here we present new results comparing aerosol optical depth (AOD), aerosol absorption optical depth ...
Recent results from diverse air, ground, and laboratory studies using both radiometric and in situ t...
The particle mixing state plays a significant yet poorly quantified role in aerosol radiative forci...
AbstractWe present an aerosol classification based upon AERONET level 2.0 almucantar retrieval produ...
Atmospheric aerosol distributions from 2000 to 2007 are simulated with the Goddard Chemistry Aeroso...