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Swain, Basudev; Vountas, Marco: Monthly average, satellite-based Aerosol Optical Thickness derived from AEROSNOW [dataset]. PANGAEA, https://doi.pangaea.de/10.1594/PANGAEA.996873 (dataset in review)

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Abstract:
This dataset contains values for total aerosol optical depth (AOD) and was derived from reflectance measurements at the top of the atmosphere by the Advanced Along-Track Scanning Radiometer (AATSR) aboard ENVISAT over snow and ice in the Arctic, using a retrieval method known as AEROSNOW. AEROSNOW combines an existing aerosol retrieval algorithm with a cloud masking algorithm and a novel quality flagging method developed specifically for use in the high Arctic (Lat ≥ 72∘ N). We use the dual-viewing capability of the AATSR instrument to determine the contribution of aerosols to the reflection at the upper boundary of the atmosphere in observations *over the bright surfaces of the cryosphere* in the Arctic. AOD is determined under the assumption that the surface reflectance observed by the satellite can be well parameterized by a bidirectional snow reflectance distribution function. The dataset consists of a single file and contains AOD values from March through October of each year starting in 2003 and ending in 2011. AEROSNOW relies on solar irradiance and specific (geometric) observational conditions. Therefore, data for March and October are sparse, as the solar zenith angles are already too high at those times of year.
Keyword(s):
aerosol optical depth; Arctic; Arctic aerosol; satellite data
Related to:
Swain, Basudev; Vountas, Marco; Deroubaix, Adrien; Lelli, Luca; Ziegler, Yanick; Jafariserajehlou, Soheila; Gunthe, Sachin S; Herber, Andreas; Ritter, Christoph; Bösch, Hartmut; Burrows, John Philipp (2024): Retrieval of aerosol optical depth over the Arctic cryosphere during spring and summer using satellite observations. Atmospheric Measurement Techniques, 17(1), 359-375, https://doi.org/10.5194/amt-17-359-2024
Swain, Basudev; Vountas, Marco; Singh, Aishwarya; Anchan, Nidhi L; Deroubaix, Adrien; Lelli, Luca; Ziegler, Yanick; Gunthe, Sachin S; Bösch, Hartmut; Burrows, John Philipp (2024): Aerosols in the central Arctic cryosphere: satellite and model integrated insights during Arctic spring and summer. Atmospheric Chemistry and Physics, 24(9), 5671-5693, https://doi.org/10.5194/acp-24-5671-2024
Swain, Basudev; Vountas, Marco; Singh, Aishwarya; Anchan, Nidhi L; Malasani, Chakradhar Reddy; Mallick, Dukhishyam; Deroubaix, Adrien; Lelli, Luca; Patel, Nisha; Alawode, Richard; Gunthe, Sachin S; Grainger, Roy G; Schmale, Julia; Hari, Vittal; Kokhanovsky, Alexander A; Wendisch, Manfred; Bösch, Hartmut; Burrows, John Philipp (2025): Insights of aerosol-precipitation nexus in the central Arctic through CMIP6 climate models. npj Climate and Atmospheric Science, 8(1), 103, https://doi.org/10.1038/s41612-025-00957-6
Swain, Basudev; Vountas, Marco; Singh, Aishwarya; Andrae, Linus; Tegen, Ina; Lelli, Luca; Song, Rui; Heinold, Bernd; Mehendale, Neha; Bösch, Hartmut (2026): Large inter-model spread in simulated aerosol load over Arctic sea ice. npj Clean Air, 2(1), 37, https://doi.org/10.1038/s44407-026-00080-7
Swain, Basudev; Vountas, Marco; Singh, Aishwarya; Song, Rui; Panda, Upasana; Schellhorn, Heiko; Andrae, Linus; Deroubaix, Adrien; Lelli, Luca; Tandon, Ankit; Nikumbh, Akshaya; Gunthe, Sachin S (2025): Model simulations capture seasonal Arctic Haze and clean-air cycle better than satellite and reanalysis. Scientific Reports, 15(1), 42934, https://doi.org/10.1038/s41598-025-29188-8
Project(s):
Funding:
German Research Foundation (DFG), grant/award no. 268020496: TRR 172: ArctiC Amplification: Climate Relevant Atmospheric and SurfaCe Processes, and Feedback Mechanisms
Coverage:
Latitude: 90.000000 * Longitude: 0.000000
Event(s):
pan-Arctic * Latitude: 90.000000 * Longitude: 0.000000 * Location: Arctic
License:
Creative Commons Attribution 4.0 International (CC-BY-4.0) (License comes into effect after moratorium ends)
Status:
Curation Level: Enhanced curation (CurationLevelC)
Size:
20 MBytes

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