We compare the aerosol single-scattering albedo (SSA) retrieved by the near-UV two-channel algorithm (OMAERUV) applied to the Aura-Ozone Monitoring Instrument (OMI) measurements with an equivalent inversion made by the ground-based Aerosol Robotic Network (AERONET). This work is the first comprehensive effort to globally compare the OMI-retrieved SSA with that of AERONET using all available sites spanning the regions of biomass burning, dust, and urban pollution. An analysis of the co-located retrievals over 269 sites reveals that about 46 percent (69 percent) of OMI-AERONET matchups agree within the absolute difference of plus or minus 0.03 (plus or minus 0.05) for all aerosol types. The comparison improves to 52 percent (77 percent) when ...
International audienceThe Ozone Monitoring Instrument (OMI) is an imaging UV-VIS solar backscatter s...
We have compared spectral ultraviolet overpass irradiances from the Ozone Monitoring Instruments (OM...
Here we present new results comparing aerosol optical depth (AOD), aerosol absorption optical depth ...
This is the first comprehensive assessment of the aerosol optical depth (AOD) product retrieved from...
Quantifying aerosol absorption at ultraviolet (UV) wavelengths is important for monitoring air pollu...
The Ozone Monitoring Instrument (OMI) onboard the EOS-Aura satellite provides information on aerosol...
Single scattering albedo (SSA) represents a unique identification of aerosol type and can be a deter...
Quantifying aerosol absorption at ultraviolet (UV) wavelengths is important for monitoring air poll...
Here we present new results comparing aerosol optical depth (AOD), aerosol absorption optical depth ...
The aerosol Single Scattering Albedo (SSA) and Absorbing Aerosol Optical Depth (AAOD) at 320.1 nm ar...
An optimal-estimation(OE)-based aerosol retrieval algorithm using the OMI (Ozone Monitoring Instrum...
An optimal-estimation(OE)-based aerosol retrieval algorithm using the OMI (Ozone Monitoring Instrume...
Quantitative measurements of aerosol absorptive properties, e.g., the absorbing aerosol optical dept...
Quantitative measurements of aerosol absorptive properties, e.g., the absorbing aerosol optical dept...
Quantitative measurements of aerosol absorptive properties, e.g., the absorbing aerosol optical dept...
International audienceThe Ozone Monitoring Instrument (OMI) is an imaging UV-VIS solar backscatter s...
We have compared spectral ultraviolet overpass irradiances from the Ozone Monitoring Instruments (OM...
Here we present new results comparing aerosol optical depth (AOD), aerosol absorption optical depth ...
This is the first comprehensive assessment of the aerosol optical depth (AOD) product retrieved from...
Quantifying aerosol absorption at ultraviolet (UV) wavelengths is important for monitoring air pollu...
The Ozone Monitoring Instrument (OMI) onboard the EOS-Aura satellite provides information on aerosol...
Single scattering albedo (SSA) represents a unique identification of aerosol type and can be a deter...
Quantifying aerosol absorption at ultraviolet (UV) wavelengths is important for monitoring air poll...
Here we present new results comparing aerosol optical depth (AOD), aerosol absorption optical depth ...
The aerosol Single Scattering Albedo (SSA) and Absorbing Aerosol Optical Depth (AAOD) at 320.1 nm ar...
An optimal-estimation(OE)-based aerosol retrieval algorithm using the OMI (Ozone Monitoring Instrum...
An optimal-estimation(OE)-based aerosol retrieval algorithm using the OMI (Ozone Monitoring Instrume...
Quantitative measurements of aerosol absorptive properties, e.g., the absorbing aerosol optical dept...
Quantitative measurements of aerosol absorptive properties, e.g., the absorbing aerosol optical dept...
Quantitative measurements of aerosol absorptive properties, e.g., the absorbing aerosol optical dept...
International audienceThe Ozone Monitoring Instrument (OMI) is an imaging UV-VIS solar backscatter s...
We have compared spectral ultraviolet overpass irradiances from the Ozone Monitoring Instruments (OM...
Here we present new results comparing aerosol optical depth (AOD), aerosol absorption optical depth ...