Remote sensing of non-aerosol absorption in cloud free atmosphere

[1] Knowledge of the absorption of sunlight by atmospheric gases, aerosols and clouds is key to understanding climate and its variation. Several studies suggested that clouds absorb sunlight significantly more than what models predict. Other studies suggested that the anomalous absorption is present...

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Online Access:http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.385.8831
http://modis-atmos.gsfc.nasa.gov/_docs/Kaufman_et_al._(2002).pdf
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spelling ftciteseerx:oai:CiteSeerX.psu:10.1.1.385.8831 2023-05-15T13:06:07+02:00 Remote sensing of non-aerosol absorption in cloud free atmosphere The Pennsylvania State University CiteSeerX Archives application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.385.8831 http://modis-atmos.gsfc.nasa.gov/_docs/Kaufman_et_al._(2002).pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.385.8831 http://modis-atmos.gsfc.nasa.gov/_docs/Kaufman_et_al._(2002).pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://modis-atmos.gsfc.nasa.gov/_docs/Kaufman_et_al._(2002).pdf text ftciteseerx 2016-09-18T00:32:38Z [1] Knowledge of the absorption of sunlight by atmospheric gases, aerosols and clouds is key to understanding climate and its variation. Several studies suggested that clouds absorb sunlight significantly more than what models predict. Other studies suggested that the anomalous absorption is present in cloud-free conditions. Here we measure absorption in cloud free atmosphere using the Aerosol Robotic Network (AERONET). Measurements of attenuation of direct sunlight are used to derive extinction optical thickness and sky measurements to derive scattering optical thickness, Residual extinction for zero scattering, cannot be caused by aerosols or known gases and would be associated with the cloud free absorption anomaly. The anomalous absorption, if exists, is assumed not to correlate with the presence of aerosol. The measurements, taken for several years in locations around the world, show that in the atmospheric windows 0.44, 0.67, 0.87 and 1.02 mm the only significant absorbers in cloud free atmosphere is aerosol and ozone. Non-aerosol absorption, defined as spectrally independent or smoothly variable, was found to have an optical thickness smaller than 0.002 ± 0.003, thereby, absorption of sunlight smaller than 1W/m 2. Text Aerosol Robotic Network Unknown
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op_collection_id ftciteseerx
language English
description [1] Knowledge of the absorption of sunlight by atmospheric gases, aerosols and clouds is key to understanding climate and its variation. Several studies suggested that clouds absorb sunlight significantly more than what models predict. Other studies suggested that the anomalous absorption is present in cloud-free conditions. Here we measure absorption in cloud free atmosphere using the Aerosol Robotic Network (AERONET). Measurements of attenuation of direct sunlight are used to derive extinction optical thickness and sky measurements to derive scattering optical thickness, Residual extinction for zero scattering, cannot be caused by aerosols or known gases and would be associated with the cloud free absorption anomaly. The anomalous absorption, if exists, is assumed not to correlate with the presence of aerosol. The measurements, taken for several years in locations around the world, show that in the atmospheric windows 0.44, 0.67, 0.87 and 1.02 mm the only significant absorbers in cloud free atmosphere is aerosol and ozone. Non-aerosol absorption, defined as spectrally independent or smoothly variable, was found to have an optical thickness smaller than 0.002 ± 0.003, thereby, absorption of sunlight smaller than 1W/m 2.
author2 The Pennsylvania State University CiteSeerX Archives
format Text
title Remote sensing of non-aerosol absorption in cloud free atmosphere
spellingShingle Remote sensing of non-aerosol absorption in cloud free atmosphere
title_short Remote sensing of non-aerosol absorption in cloud free atmosphere
title_full Remote sensing of non-aerosol absorption in cloud free atmosphere
title_fullStr Remote sensing of non-aerosol absorption in cloud free atmosphere
title_full_unstemmed Remote sensing of non-aerosol absorption in cloud free atmosphere
title_sort remote sensing of non-aerosol absorption in cloud free atmosphere
url http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.385.8831
http://modis-atmos.gsfc.nasa.gov/_docs/Kaufman_et_al._(2002).pdf
genre Aerosol Robotic Network
genre_facet Aerosol Robotic Network
op_source http://modis-atmos.gsfc.nasa.gov/_docs/Kaufman_et_al._(2002).pdf
op_relation http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.385.8831
http://modis-atmos.gsfc.nasa.gov/_docs/Kaufman_et_al._(2002).pdf
op_rights Metadata may be used without restrictions as long as the oai identifier remains attached to it.
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