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Asynchrony between Antarctic temperature and CO2 associated with obliquity over the past 720000 years

机译:在过去的720000年中南极温度与CO2的异步与倾角有关

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摘要

The δD temperature proxy in Antarctic ice cores varies in parallel with CO2 through glacial cycles. However, these variables display a puzzling asynchrony. Well-dated records of Southern Ocean temperature will provide crucial information because the Southern Ocean is likely key in regulating CO2 variations. Here, we perform multiple isotopic analyses on an Antarctic ice core and estimate temperature variations at this site and in the oceanic moisture source over the past 720,000 years, which extend the longest records by 300,000 years. Antarctic temperature is affected by large variations in local insolation that are induced by obliquity. At the obliquity periodicity, the Antarctic and ocean temperatures lag annual mean insolation. Further, the magnitude of the phase lag is minimal during low eccentricity periods, suggesting that secular changes in the global carbon cycle and the ocean circulation modulate the phase relationship among temperatures, CO2 and insolation in the obliquity frequency band.
机译:南极冰芯中的δD温度代理通过冰川周期与CO2平行变化。但是,这些变量显示出令人困惑的异步性。良好的南部海洋温度记录将提供关键信息,因为南部海洋可能是调节CO2变化的关键。在这里,我们对南极冰芯进行了多次同位素分析,并估计了过去720,000年该地点和海洋水分源中的温度变化,从而将最长记录延长了30万年。南极温度受倾斜引起的局部日照变化的影响。在倾斜周期,南极和海洋温度滞后于年平均日照。此外,在低离心率期间,相位滞后的幅度很小,这表明全球碳循环和海洋环流的长期变化调节了倾斜频带中温度,CO2和日照之间的相位关系。

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