Abstract
A band of cooling that extends across mid-latitude Eurasia is identified in the wintertime surface air temperatures of the latest ECMWF reanalysis. This cooling is related to extreme warming around the Kara Sea through changes in the meridional temperature gradient. Surface temperatures in the Arctic have risen faster than those at lower latitudes, and as the Arctic warming increases, this north–south temperature gradient is weakened. This change in the meridional temperature gradient causes a decrease in the westerly winds that help maintain the mild European climate by transporting heat from the Atlantic. Since decreasing sea ice concentrations have been shown to be a driving factor in Arctic amplification, a singular value decomposition analysis is used to confirm the co-variability of the Arctic sea ice, including the Kara Sea, and the temperatures over the mid-latitude Eurasia. These findings suggest that decreasing sea ice concentrations can change the meridional temperature gradient and hence the large-scale atmospheric flow of the Northern Hemisphere.
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References
ACIA (2004) Impacts of a warming Arctic: Arctic climate impact assessment. Cambridge University Press
Bekryaev R, Polyakov I, Alexeev V (2010) Role of polar amplification in long-term surface air temperature variations and modern Arctic warming. J Clim 23:3888–3906
Braganza K, Karoly D, Hirst A, Stott P, Stouffer R, Tett S (2004) Simple indices of global climate variability and change—part II: attribution of climate change during the twentieth century. Clim Dyn 22:823–838
Comiso J (2003) Warming trends in the Arctic from clear sky satellite observations. J Clim 16:3498–3510
Hoffert M, Covey C (1992) Deriving global climate sensitivity from paleoclimate reconstructions. Nature 360:573–576
Holton JR (2004) An introduction to dynamic meteorology. Academic Press
Honda M, Inoue J, Yamane S (2009) Influence of low Arctic sea-ice minima on anomalously cold Eurasian winters. Geophys Res Lett 36(L08707)
Liu Y, Key J, Wang X (2009) Influence of changes in sea ice concentration and cloud cover on recent Arctic surface temperature trends. Geophys Res Lett 36(L20710)
Overland J, Wang M (2010) Large-scale atmospheric circulation changes are associated with the recent loss of Arctic sea ice. Tellus A 62:1–9
Overland J, Wang M, Salo S (2008) The recent Arctic warm period. Tellus A 60:589–597
Petoukhov V, Semenov V (2010) A link between reduced Barents-Kara sea ice and cold winter extremes over northern continents. J Geophys Res 115(D21)
Schweiger A, Lindsay R, Vavrus S, Francis J (2008) Relationships between Arctic sea ice and clouds during autumn. J Clim 21:4799–4810
Screen J, Simmonds I (2011) Erroneous Arctic temperature trends in the ERA-40 reanalysis: a closer look. J Clim 24:2620–2627
Serreze M, Barrett A, Stroeve J, Kindig D, Holland M (2009) The emergence of surface based Arctic amplification. Cryosphere 3:11–19
Simmons A, Uppala S, Dee D, Kobayashi S (2006) ERA-interim: new ECMWF reanalysis product from 1989 onwards. ECMWF Newsl 110:25–35
Solomon S, Qin D, Manning M, Chen Z, Marquis M, Averyt K, Tignor M, Miller HE (2007) IPCC, 2007: summary for policymakers. In: Climate Change 2007: the physical science basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge University Press
Stroeve J, Holland M, Meier W, Scambos T, Serreze M (2007) Arctic sea ice decline: faster than forecast. Geophys Res Lett 34:1–5
Uppala S, Dee D, Kobayashi S, Berrisford P, Simmons A (2008) Towards a climate data assimilation system: status update of ERA-interim. ECMWF Newsl 115:12–18
Zhang X, Sorteberg A, Zhang J, Gerdes R, Comiso J (2008) Recent radical shifts of atmospheric circulations and rapid changes in Arctic climate system. Geophys Res Lett 35(L22701)
Acknowledgement
This work was funded by grants PBL-feedback 191516/V30 and NERSC-IARC 196178/S30 from the Norwegian Research Council. ERA-Interim reanalysis data was provided by Hilde Haakenstad of the Meteorologisk Institutt and is available directly from the ECMWF (at http://data.ecmwf.int/data/index.html). Data storage and analysis facilities were provided by the Bergen Centre of Computational Science.
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Outten, S.D., Esau, I. A link between Arctic sea ice and recent cooling trends over Eurasia. Climatic Change 110, 1069–1075 (2012). https://doi.org/10.1007/s10584-011-0334-z
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DOI: https://doi.org/10.1007/s10584-011-0334-z