Satellite-based aerosol retrievals from NASA’s Moderate Resolution Imaging Spectrometer (MODIS) and NASA’s Multi-angle Imaging Spectrometer (MISR) are evaluated above four mountainous U.S. sites. We (1) examine the influence of spatial and temporal variability in aerosol and surface properties on satellite / sunphotometer agreement, (2) apply and assess an automated method for optimizing collocation window and radius in the context of variability in surface properties and aerosol optical depth (AOD), and (3) compare the performance of satellite AOD products above the four sites, and examine factors influencing their performance. Maps of the Normalized Differential Vegetation Index (NDVI), topography, and land cover are used to characterize ...
International audienceThis study presents a comprehensive evaluation of eight aerosol optical depth ...
It is difficult to retrieve aerosol and surface reflectance properties over land, simultaneously, fr...
NASA's MODIS sensors have been observing the Earth from polar orbit, from <i>Terra</i&...
The literature shows that aerosol optical depth (AOD) derived from the MODIS Collection 5 (C5) dark ...
The literature shows that aerosol optical depth (AOD) derived from the MODIS Collection 5 (C5) dark ...
Quantitative evaluation of chemical transport models (CTMs) with aerosol optical depth (AOD) product...
Quantitative evaluation of chemical transport models (CTMs) with aerosol optical depth (AOD) product...
A recent paper by Mishchenko et al. compares near-coincident MISR, MODIS, and AERONET aerosol optica...
Moderate Resolution Imaging SpectroRadiometer (MODIS) and Multi-angle Imaging Spectroradiomater (MIS...
Recent observations reveal that dust storms are increasing in the western USA, posing imminent risks...
The Aerosol Optical Depth (AOD), a measure of the scattering and absorption of light by aerosols, ha...
Satellite-retrieved aerosol optical depth (AOD) has become an important predictor of ground-level pa...
The Studies of Emissions and Atmospheric Composition, Clouds and Climate Coupling by Regional Survey...
Aerosols are major components of the Earth's global climate system, affecting the radiation budget a...
This work provides a comparison of satellite retrievals of Saharan desert dust aerosol optical depth...
International audienceThis study presents a comprehensive evaluation of eight aerosol optical depth ...
It is difficult to retrieve aerosol and surface reflectance properties over land, simultaneously, fr...
NASA's MODIS sensors have been observing the Earth from polar orbit, from <i>Terra</i&...
The literature shows that aerosol optical depth (AOD) derived from the MODIS Collection 5 (C5) dark ...
The literature shows that aerosol optical depth (AOD) derived from the MODIS Collection 5 (C5) dark ...
Quantitative evaluation of chemical transport models (CTMs) with aerosol optical depth (AOD) product...
Quantitative evaluation of chemical transport models (CTMs) with aerosol optical depth (AOD) product...
A recent paper by Mishchenko et al. compares near-coincident MISR, MODIS, and AERONET aerosol optica...
Moderate Resolution Imaging SpectroRadiometer (MODIS) and Multi-angle Imaging Spectroradiomater (MIS...
Recent observations reveal that dust storms are increasing in the western USA, posing imminent risks...
The Aerosol Optical Depth (AOD), a measure of the scattering and absorption of light by aerosols, ha...
Satellite-retrieved aerosol optical depth (AOD) has become an important predictor of ground-level pa...
The Studies of Emissions and Atmospheric Composition, Clouds and Climate Coupling by Regional Survey...
Aerosols are major components of the Earth's global climate system, affecting the radiation budget a...
This work provides a comparison of satellite retrievals of Saharan desert dust aerosol optical depth...
International audienceThis study presents a comprehensive evaluation of eight aerosol optical depth ...
It is difficult to retrieve aerosol and surface reflectance properties over land, simultaneously, fr...
NASA's MODIS sensors have been observing the Earth from polar orbit, from <i>Terra</i&...