CarlsonAndersECEOASLinking8.2kaEventCorrection.pdf

The 8.2 ka event was the last deglacial abrupt climate event. A reduction in the Atlantic meridional overturning circulation (AMOC) attributed to the drainage of glacial Lake Agassiz may have caused the event, but the freshwater signature of Lake Agassiz discharge has yet to be identified in δ¹⁸O of...

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Main Authors: Hoffman, Jeremy S., Carlson, Anders E., Winsor, Kelsey, Klinkhammer, Gary P., LeGrande, Allegra N., Andrews, John T., Strasser, Jeffrey C.
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Online Access:https://ir.library.oregonstate.edu/concern/defaults/8k71nj660
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spelling ftoregonstate:ir.library.oregonstate.edu:8k71nj660 2024-04-21T08:06:37+00:00 CarlsonAndersECEOASLinking8.2kaEventCorrection.pdf Hoffman, Jeremy S. Carlson, Anders E. Winsor, Kelsey Klinkhammer, Gary P. LeGrande, Allegra N. Andrews, John T. Strasser, Jeffrey C. https://ir.library.oregonstate.edu/concern/defaults/8k71nj660 unknown https://ir.library.oregonstate.edu/concern/defaults/8k71nj660 Copyright Not Evaluated ftoregonstate 2024-03-28T01:40:26Z The 8.2 ka event was the last deglacial abrupt climate event. A reduction in the Atlantic meridional overturning circulation (AMOC) attributed to the drainage of glacial Lake Agassiz may have caused the event, but the freshwater signature of Lake Agassiz discharge has yet to be identified in δ¹⁸O of foraminiferal calcite records from the Labrador Sea, calling into question the connection between freshwater discharge to the North Atlantic and AMOC strength. Using Mg/Ca-paleothermometry, we demonstrate that ∼3°C of near-surface ocean cooling masked an ∼1.0‰ decrease in western Labrador Sea δ¹⁸O of seawater concurrent with Lake Agassiz drainage. Comparison with North Atlantic δ¹⁸O of seawater records shows that the freshwater discharge was transported to regions of deep-water formation where it could perturb AMOC and force the 8.2 ka event. Other/Unknown Material Labrador Sea North Atlantic ScholarsArchive@OSU (Oregon State University)
institution Open Polar
collection ScholarsArchive@OSU (Oregon State University)
op_collection_id ftoregonstate
language unknown
description The 8.2 ka event was the last deglacial abrupt climate event. A reduction in the Atlantic meridional overturning circulation (AMOC) attributed to the drainage of glacial Lake Agassiz may have caused the event, but the freshwater signature of Lake Agassiz discharge has yet to be identified in δ¹⁸O of foraminiferal calcite records from the Labrador Sea, calling into question the connection between freshwater discharge to the North Atlantic and AMOC strength. Using Mg/Ca-paleothermometry, we demonstrate that ∼3°C of near-surface ocean cooling masked an ∼1.0‰ decrease in western Labrador Sea δ¹⁸O of seawater concurrent with Lake Agassiz drainage. Comparison with North Atlantic δ¹⁸O of seawater records shows that the freshwater discharge was transported to regions of deep-water formation where it could perturb AMOC and force the 8.2 ka event.
author Hoffman, Jeremy S.
Carlson, Anders E.
Winsor, Kelsey
Klinkhammer, Gary P.
LeGrande, Allegra N.
Andrews, John T.
Strasser, Jeffrey C.
spellingShingle Hoffman, Jeremy S.
Carlson, Anders E.
Winsor, Kelsey
Klinkhammer, Gary P.
LeGrande, Allegra N.
Andrews, John T.
Strasser, Jeffrey C.
CarlsonAndersECEOASLinking8.2kaEventCorrection.pdf
author_facet Hoffman, Jeremy S.
Carlson, Anders E.
Winsor, Kelsey
Klinkhammer, Gary P.
LeGrande, Allegra N.
Andrews, John T.
Strasser, Jeffrey C.
author_sort Hoffman, Jeremy S.
title CarlsonAndersECEOASLinking8.2kaEventCorrection.pdf
title_short CarlsonAndersECEOASLinking8.2kaEventCorrection.pdf
title_full CarlsonAndersECEOASLinking8.2kaEventCorrection.pdf
title_fullStr CarlsonAndersECEOASLinking8.2kaEventCorrection.pdf
title_full_unstemmed CarlsonAndersECEOASLinking8.2kaEventCorrection.pdf
title_sort carlsonanderseceoaslinking8.2kaeventcorrection.pdf
url https://ir.library.oregonstate.edu/concern/defaults/8k71nj660
genre Labrador Sea
North Atlantic
genre_facet Labrador Sea
North Atlantic
op_relation https://ir.library.oregonstate.edu/concern/defaults/8k71nj660
op_rights Copyright Not Evaluated
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