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Rapid global ocean-atmosphere response to Southern Ocean freshening during the last glacial

机译:在上一次冰川期间全球海洋大气对南洋新鲜化的快速反应

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摘要

Contrasting Greenland and Antarctic temperatures during the last glacial period (115,000 to 11,650 years ago) are thought to have been driven by imbalances in the rates of formation of North Atlantic and Antarctic Deep Water (the ‘bipolar seesaw’). Here we exploit a bidecadally resolved 14C data set obtained from New Zealand kauri (Agathis australis) to undertake high-precision alignment of key climate data sets spanning iceberg-rafted debris event Heinrich 3 and Greenland Interstadial (GI) 5.1 in the North Atlantic (~30,400 to 28,400 years ago). We observe no divergence between the kauri and Atlantic marine sediment 14C data sets, implying limited changes in deep water formation. However, a Southern Ocean (Atlantic-sector) iceberg rafted debris event appears to have occurred synchronously with GI-5.1 warming and decreased precipitation over the western equatorial Pacific and Atlantic. An ensemble of transient meltwater simulations shows that Antarctic-sourced salinity anomalies can generate climate changes that are propagated globally via an atmospheric Rossby wave train.
机译:上个冰川期(115,000至11,650年前)的格陵兰岛和南极大陆温度相反,被认为是北大西洋和南极深水(“双极跷跷板”)形成速率不平衡所致。在这里,我们利用从新西兰贝壳杉(Agathis australis)获得的经过双向分解的 14 C数据集,对跨越冰山漂流碎片事件Heinrich 3和格陵兰岛际(GI)的关键气候数据集进行高精度对准。 )5.1在北大西洋(约30,400至28,400年前)。我们观察到贝壳杉和大西洋海洋沉积物 14 C数据集之间没有差异,这意味着深水形成的变化有限。但是,南部大洋(大西洋地区)的冰山漂流碎片事件似乎与GI-5.1变暖同时发生,并且在赤道西太平洋和大西洋上空降水减少。一组瞬态融水模拟结果表明,南极来源的盐度异常会产生气候变化,并通过大气Rossby波列在全球传播。

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