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Surface changes in the North Atlantic meridional overturning circulation during the last millennium.


ABSTRACT: Despite numerous investigations, the dynamical origins of the Medieval Climate Anomaly and the Little Ice Age remain uncertain. A major unresolved issue relating to internal climate dynamics is the mode and tempo of Atlantic meridional overturning circulation variability, and the significance of decadal-to-centennial scale changes in Atlantic meridional overturning circulation strength in regulating the climate of the last millennium. Here we use the time-constrained high-resolution local radiocarbon reservoir age offset derived from an absolutely dated annually resolved shell chronology spanning the past 1,350 years, to reconstruct changes in surface ocean circulation and climate. The water mass tracer data presented here from the North Icelandic shelf, combined with previously published data from the Arctic and subtropical Atlantic, show that surface Atlantic meridional overturning circulation dynamics likely amplified the relatively warm conditions during the Medieval Climate Anomaly and the relatively cool conditions during the Little Ice Age within the North Atlantic sector.

SUBMITTER: Wanamaker AD 

PROVIDER: S-EPMC3621426 | biostudies-literature | 2012 Jun

REPOSITORIES: biostudies-literature

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Surface changes in the North Atlantic meridional overturning circulation during the last millennium.

Wanamaker Alan D AD   Butler Paul G PG   Scourse James D JD   Heinemeier Jan J   Eiríksson Jón J   Knudsen Karen Luise KL   Richardson Christopher A CA  

Nature communications 20120612


Despite numerous investigations, the dynamical origins of the Medieval Climate Anomaly and the Little Ice Age remain uncertain. A major unresolved issue relating to internal climate dynamics is the mode and tempo of Atlantic meridional overturning circulation variability, and the significance of decadal-to-centennial scale changes in Atlantic meridional overturning circulation strength in regulating the climate of the last millennium. Here we use the time-constrained high-resolution local radioc  ...[more]

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