Science · 2014 · 163 citations · 50 references
EngineeringDeep Ocean CirculationPaleoceanographyOceanographyBuoyancy ThresholdLast Interglacial PeriodEarth ScienceSocial SciencesPaleoenvironmental ChangeSea-level HistoryOceanic SystemsClimate ChangeMarine GeologySea-level ChangeNadw TransientsGeographyCryospherePaleoclimatologyEarth's ClimateClimate DynamicsClimatologyPhysical OceanographyRapid ReductionsPaleoecology
Deep ocean circulation has been considered relatively stable during interglacial periods, yet little is known about its behavior on submillennial time scales. Using a subcentennially resolved epibenthic foraminiferal δ(13)C record, we show that the influence of North Atlantic Deep Water (NADW) was strong at the onset of the last interglacial period and was then interrupted by several prominent centennial-scale reductions. These NADW transients occurred during periods of increased ice rafting and southward expansions of polar water influence, suggesting that a buoyancy threshold for convective instability was triggered by freshwater and circum-Arctic cryosphere changes. The deep Atlantic chemical changes were similar in magnitude to those associated with glaciations, implying that the canonical view of a relatively stable interglacial circulation may not hold for conditions warmer and fresher than at present.
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