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titlePotential Link Between Ice Nucleation and Climate Model Spread in Arctic Amplification
DOI10.1029/2021GL097373
Full Text URIhttps://ntrs.nasa.gov/citations/20220009666
Author(eng)Ivy Tran; Donifan Barahona; Quentin Coopman
Author Affiliation(eng)McGill University; Goddard Space Flight Center; McGill University
Issue Date2022-01-31
PublisherWiley / American Geophysical Union
Publication titleGeophysical Research Letters
Volume49
Issue4
AbstractArctic amplification (AA) is simulated by all global climate models, however the spread in the degree of projected warming is large and the underlying mechanisms driving it are poorly understood. The impact of the temperature dependence of immersion freezing on cloud feedbacks and AA is studied using NASA's GEOS-5 model. Parameterizations that exhibit low ice-nucleating particle (INP) concentrations in the high Arctic during summer are found to weaken the cloud-phase feedback. This allows sunlight to readily melt sea-ice in the summer, which decreases the stability of the lower troposphere, causing a decrease in wintertime cloud fraction over open ocean. Arctic amplification was found to span from ∼1.4 to >2.6, which spans 30% of the spread in AA in the coupled model intercomparison project models, depending on the temperature dependence of immersion freezing. These results suggest that summertime INP concentrations may provide an observational constraint on AA.
NASA Subject CategoryGeophysics
ISSN0094-8276
1944-8007
RightsCreative Commons License:NO
URIhttps://repository.exst.jaxa.jp/dspace/handle/a-is/1188693


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