Biblio
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Observed atmospheric coupling between Barents Sea ice and the warm-Arctic cold-Siberian anomaly pattern. Journal of Climate 29, (2016).
Observed Atmospheric Coupling between Barents Sea ice and the Warm-Arctic Cold-Siberia anomaly pattern. Journal of Climate (2015).doi:10.1175/JCLI-D-15-0046.1
THE ROLE OF THE BARENTS SEA IN THE ARCTIC CLIMATE SYSTEM. Reviews of geophysics 51, (2013). Download: The role of the Barents_ROG.pdf (3.32 MB)
Buoyancy forcing: A key driver of northern North Atlantic sea surface temperature variability across multiple timescales. Climate of the Past 19, (2023).
Reconciling conflicting evidence for the cause of the observed early 21st century Eurasian cooling. Weather and Climate Dynamics (WCD) 4, (2023). Abstract
Key physical processes and their model representation for projecting climate impacts on subarctic Atlantic net primary production: A synthesis. Progress in Oceanography 217, (2023).
Dynamical drivers of Greenland blocking in climate models. Weather and Climate Dynamics (WCD) 2, (2021).
The relationship between the eddy-driven jet stream and northern European sea level variability. Tellus A: Dynamic Meteorology and Oceanography 73, (2021).
ENSO teleconnections in terms of non-NAO and NAO atmospheric variability. Climate Dynamics (2023).doi:10.1007/s00382-023-06697-8
A brief history of climate e the northern seas from the last Glacial Maximum to global warming. Quaternary Science Reviews 106, (2014).