Our Research
As climate changes, how do Earth's frozen areas affect our planet and impact society?
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2024
Roach LA; Meier WN (2024) Sea ice in 2023 5 (4) 235-237, doi: 10.1038/s43017-024-00542-0
Jozef GC; Cassano JJ; Dahlke S; Dice M; Cox CJ; de Boer G (2024) An overview of the vertical structure of the atmospheric boundary layer in the central Arctic during MOSAiC Atmospheric Chemistry and Physics 24 (2) 1429-1450, doi: 10.5194/acp-24-1429-2024
Dice MJ; Cassano JJ; Jozef GC (2024) Forcing for varying boundary layer stability across Antarctica Weather and Climate Dynamics 5 (1) 369-394, doi: 10.5194/wcd-5-369-2024
Ma W; Wang H; Chen G; Leung LR; Lu J; Rasch PJ; Fu Q; Kravitz B; Zou Y; Cassano JJ (2024) The role of interdecadal climate oscillations in driving Arctic atmospheric river trends Nature Communications 15 (1) doi: 10.1038/s41467-024-45159-5
2023
Haumann FA; Massonnet F; Holland PR; Bushuk M; Maksym T; Hobbs W; Meredith MP; Cerovečki I; Lavergne T; Meier WN (2023) An abrupt transition in the Antarctic sea ice–ocean system doi: 10.5194/egusphere-egu23-8749
Jozef GC; Klingel R; Cassano JJ; Maronga B; de Boer G; Dahlke S; Cox CJ (2023) Derivation and compilation of lower atmospheric properties relating to temperature, wind, stability, moisture, and surface radiation budget over the central Arctic sea ice during MOSAiC doi: 10.5194/essd-2023-141
Long DG; Brodzik MJ; Hardman M (2023) Evaluating the effective resolution of enhanced resolution SMAP brightness temperature image products 4 doi: 10.3389/frsen.2023.1073765
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