Jouzel J, Masson-Delmotte V, Cattani O, Dreyfus G, Falourd S, Hoffmann G, Minster B, Nouet J, Barnola J M, Chappellaz J, Fischer H, Gallet J C, Johnsen S, Leuenberger M, Loulergue L, Luethi D, Oerter H, Parrenin F, Raisbeck G, Raynaud D, Schilt A, Schwander J, Selmo E, Souchez R, Spahni R, Stauffer B, Steffensen J P, Stenni B, Stocker T F, Tison J L, Werner M, Wolff E W
Laboratoire des Sciences du Climat et l'Environnement, Institut Pierre Simon Laplace, CEA-CNRS-Université de Versailles Saint-Quentin en Yvelines, CE Saclay, Gif-sur-Yvette, France.
Science. 2007 Aug 10;317(5839):793-6. doi: 10.1126/science.1141038. Epub 2007 Jul 5.
A high-resolution deuterium profile is now available along the entire European Project for Ice Coring in Antarctica Dome C ice core, extending this climate record back to marine isotope stage 20.2, approximately 800,000 years ago. Experiments performed with an atmospheric general circulation model including water isotopes support its temperature interpretation. We assessed the general correspondence between Dansgaard-Oeschger events and their smoothed Antarctic counterparts for this Dome C record, which reveals the presence of such features with similar amplitudes during previous glacial periods. We suggest that the interplay between obliquity and precession accounts for the variable intensity of interglacial periods in ice core records.
现在,沿着整个南极 Dome C 冰芯的欧洲冰芯钻探计划,可以获得高分辨率的氘同位素剖面,将这一气候记录追溯到大约 80 万年前的海洋同位素阶段 20.2。使用包含水同位素的大气环流模型进行的实验支持了其温度解释。我们评估了 Dansgaard-Oeschger 事件与该 Dome C 记录中平滑后的南极对应事件之间的总体对应关系,这揭示了在以前的冰川期存在幅度相似的此类特征。我们认为,倾斜度和岁差之间的相互作用解释了冰芯记录中冰期强度的变化。