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245 00 |a Recovery mechanisms of Arctic summer sea ice |h [electronic resource].
260        |a [S.l.] : |b American Geophysical Union, |c 2011-01-26.
490        |a Geophysical Research Letters, Volume 38.
506        |a Please contact the owning institution for licensing and permissions. It is the user's responsibility to ensure use does not violate any third party rights.
520 3    |a We examine the recovery of Arctic sea ice from prescribed ice‐free summer conditions in simulations of 21st century climate in an atmosphere–ocean general circulation model. We find that ice extent recovers typically within two years. The excess oceanic heat that had built up during the ice‐free summer is rapidly returned to the atmosphere during the following autumn and winter, and then leaves the Arctic partly through increased longwave emission at the top of the atmosphere and partly through reduced atmospheric heat advection from lower latitudes. Oceanic heat transport does not contribute significantly to the loss of the excess heat. Our results suggest that anomalous loss of Arctic sea ice during a single summer is reversible, as the ice–albedo feedback is alleviated by large‐scale recovery mechanisms. Hence, hysteretic threshold behavior (or a “tipping point”) is unlikely to occur during the decline of Arctic summer seaice cover in the 21st century.
533        |a Electronic reproduction. |c Florida International University, |d 2015. |f (dpSobek) |n Mode of access: World Wide Web. |n System requirements: Internet connectivity; Web browser software.
650        |a climate change.
650        |a Sea ice--Arctic regions.
650        |a scientific research.
720        |a S. Tietsche.
720        |a D. Notz.
720        |a J.H. Jungclaus.
720        |a J. Marotzke.
830    0 |a dpSobek.
830    0 |a Sea Level Rise.
852        |a dpSobek |c Sea Level Rise
856 40 |u http://dpanther.fiu.edu/dpService/dpPurlService/purl/FI15042551/00001 |y Click here for full text
992 04 |a http://dpanther.fiu.edu/sobek/content/FI/15/04/25/51/00001/FI15042551_thm.jpg
997        |a Sea Level Rise


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