We compared star-photometry-derived, polar winter aerosol optical depths (AODs), acquired at Eureka, Nunavut, Canada, and Ny-Ålesund, Svalbard, with GEOS-Chem (GC) simulations as well as ground-based lidar and CALIOP (Cloud-Aerosol Lidar with Orthogonal Polarization) retrievals over a sampling period of two polar winters. The results indicate significant cloud and/or low-altitude ice crystal (LIC) contamination which is only partially corrected using temporal cloud screening. Spatially homogeneous clouds and LICs that remain after temporal cloud screening represent an inevitable systematic error in the estimation of AOD: this error was estimated to vary from 78 to 210 % at Eureka and from 2 to 157 % at Ny-Ålesund. Lidar analysis i...
The sunphotometry-lidar synergy has proven to be effective for the characterization of aerosol event...
International audienceExtensive measurements from ground-based sites and satellite remote sensing (C...
In the beginning of March 2018, Lidar measurements were performed on Svalbard, Arctic Ocean, in orde...
We compared star-photometry-derived, polar winter aerosol optical depths (AODs), acquired at Eureka...
The Arctic region is particularly sensitive to climate change and has recently undergone major alter...
We present recent progress on nighttime retrievals of aerosol and cloud optical properties over the ...
Data sets from CloudSat radar reflectivity and CALIPSO lidar backscattering measurements provide a n...
Clouds present many challenges to climate modelling. To develop and verify the parameterisations nee...
We present recent progress related to the night-time retrievals of aerosol and cloud optical depth u...
International audienceArctic ice cloud formation during winter is poorly understood mainly due to la...
Results from preparatory stage of studying the seasonal and interannual variations in atmospheric ae...
Results from preparatory stage of studying the seasonal and interannual variations in atmospheric ae...
Results from preparatory stage of studying the seasonal and interannual variations in atmospheric ae...
The Arctic region is particularly sensitive to climate change and has recently undergone major alter...
The lack of aerosol information over the cryosphere introduces large uncertainties to our understand...
The sunphotometry-lidar synergy has proven to be effective for the characterization of aerosol event...
International audienceExtensive measurements from ground-based sites and satellite remote sensing (C...
In the beginning of March 2018, Lidar measurements were performed on Svalbard, Arctic Ocean, in orde...
We compared star-photometry-derived, polar winter aerosol optical depths (AODs), acquired at Eureka...
The Arctic region is particularly sensitive to climate change and has recently undergone major alter...
We present recent progress on nighttime retrievals of aerosol and cloud optical properties over the ...
Data sets from CloudSat radar reflectivity and CALIPSO lidar backscattering measurements provide a n...
Clouds present many challenges to climate modelling. To develop and verify the parameterisations nee...
We present recent progress related to the night-time retrievals of aerosol and cloud optical depth u...
International audienceArctic ice cloud formation during winter is poorly understood mainly due to la...
Results from preparatory stage of studying the seasonal and interannual variations in atmospheric ae...
Results from preparatory stage of studying the seasonal and interannual variations in atmospheric ae...
Results from preparatory stage of studying the seasonal and interannual variations in atmospheric ae...
The Arctic region is particularly sensitive to climate change and has recently undergone major alter...
The lack of aerosol information over the cryosphere introduces large uncertainties to our understand...
The sunphotometry-lidar synergy has proven to be effective for the characterization of aerosol event...
International audienceExtensive measurements from ground-based sites and satellite remote sensing (C...
In the beginning of March 2018, Lidar measurements were performed on Svalbard, Arctic Ocean, in orde...