An accurate and generalized global retrieval algorithm from satellite observations is a prerequisite to understand the radiative effect of atmospheric aerosols on the climate system. Current operational aerosol retrieval algorithms are limited by the inversion schemes and suffering from the non-uniqueness problem. In order to solve these issues, a new algorithm is developed for the retrieval of non-spherical dust aerosol over land using multi-angular radiance and polarized measurements of the POLDER (POLarization and Directionality of the Earth’s Reflectances) and wide spectral high-resolution measurements of the MODIS (MODerate resolution Imaging Spectro-radiometer). As the first step to account for the non-sphericity of irregularly sha...
We present here the aerosol retrieval technique FAR that uses radiative transfer computations in the...
International audienceWe present a method for simultaneously retrieving aerosol and surface paramete...
International audienceWe present a method for simultaneously retrieving aerosol and surface paramete...
Original article can be found at: http://www.sciencedirect.com/ Copyright ElsevierWe use the radiati...
We present a numerical testbed for remote sensing of aerosols, together with a demonstration for eva...
The Aerosol Optical Depth (AOD), a measure of the scattering and absorption of light by aerosols, ha...
Atmospheric aerosols interact with sun light by scattering and absorbing radiation. By changing irra...
We use the radiative transfer model and chemistry transport model to improve our retrievals of dust ...
Aerosols are major components of the Earth's global climate system, affecting the radiation budget a...
Since first light in early 2000, operational global quantitative retrievals of aerosol properties ov...
A new algorithm, using the Moderate Resolution Imaging Spectroradiometer (MODIS) satellite reflectan...
Atmospheric aerosol particles, both natural and anthropogenic, are important to the earth's radiativ...
Atmospheric aerosol particles, both natural and anthropogenic, are important to the earth's radiativ...
In this presentation, we demonstrate application of a new aerosol classification algorithm to retrie...
The proposed development is an attempt to enhance aerosol retrieval by emphasizing statistical optim...
We present here the aerosol retrieval technique FAR that uses radiative transfer computations in the...
International audienceWe present a method for simultaneously retrieving aerosol and surface paramete...
International audienceWe present a method for simultaneously retrieving aerosol and surface paramete...
Original article can be found at: http://www.sciencedirect.com/ Copyright ElsevierWe use the radiati...
We present a numerical testbed for remote sensing of aerosols, together with a demonstration for eva...
The Aerosol Optical Depth (AOD), a measure of the scattering and absorption of light by aerosols, ha...
Atmospheric aerosols interact with sun light by scattering and absorbing radiation. By changing irra...
We use the radiative transfer model and chemistry transport model to improve our retrievals of dust ...
Aerosols are major components of the Earth's global climate system, affecting the radiation budget a...
Since first light in early 2000, operational global quantitative retrievals of aerosol properties ov...
A new algorithm, using the Moderate Resolution Imaging Spectroradiometer (MODIS) satellite reflectan...
Atmospheric aerosol particles, both natural and anthropogenic, are important to the earth's radiativ...
Atmospheric aerosol particles, both natural and anthropogenic, are important to the earth's radiativ...
In this presentation, we demonstrate application of a new aerosol classification algorithm to retrie...
The proposed development is an attempt to enhance aerosol retrieval by emphasizing statistical optim...
We present here the aerosol retrieval technique FAR that uses radiative transfer computations in the...
International audienceWe present a method for simultaneously retrieving aerosol and surface paramete...
International audienceWe present a method for simultaneously retrieving aerosol and surface paramete...