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Strong coupling of Asian Monsoon and Antarctic climates on sub-orbital timescales

机译:亚洲季风和南极气候在亚轨道时间尺度上的强耦合

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摘要

There is increasing evidence that millennial-scale climate variability played an active role on orbital-scale climate changes, but the mechanism for this remains unclear. A 230Th-dated stalagmite δ18O record between 88 and 22 thousand years (ka) ago from Yongxing Cave in central China characterizes changes in Asian monsoon (AM) strength. After removing the 65°N insolation signal from our record, the δ18O residue is strongly anti-phased with Antarctic temperature variability on sub-orbital timescales during the Marine Isotope Stage (MIS) 3. Furthermore, once the ice volume signal from Antarctic ice core records were removed and extrapolated back to the last two glacial-interglacial cycles, we observe a linear relationship for both short- and long-duration events between Asian and Antarctic climate changes. This provides the robust evidence of a link between northern and southern hemisphere climates that operates through changes in atmospheric circulation. We find that the weakest monsoon closely associated with the warmest Antarctic event always occurred during the Terminations. This finding, along with similar shifts in the opal flux record, suggests that millennial-scale events play a key role in driving the deglaciation through positive feedbacks associated with enhanced upwelling and increasing CO2.
机译:越来越多的证据表明,千禧年规模的气候变异性在轨道规模的气候变化中起着积极的作用,但是其机制尚不清楚。来自中国中部永兴洞的 230 日期为日期的石笋δ 18 O记录在88至2.2万年前(ka),其特征是亚洲季风(AM)强度的变化。从我们的记录中删除65°N的日照信号后,δ 18 O残留物在海洋同位素阶段(MIS)3的亚轨道时间尺度上与南极温度可变性强烈反相位。一旦从南极冰芯记录中提取的冰量信号被删除并推断回到最后两个冰期-冰期之间,我们就会观察到亚洲和南极气候变化之间短期和长期事件的线性关系。这提供了北半球和南半球气候之间联系的有力证据,该联系通过大气环流的变化而起作用。我们发现,与最温暖的南极事件密切相关的最弱的季风总是发生在终止时期。这一发现以及蛋白石通量记录的类似变化表明,千禧年规模的事件在通过与上升流增加和二氧化碳增加相关的正反馈驱动冰消作用中起着关键作用。

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