Division of Geology and Geophysics, College of Natural Sciences, Kangwon National University, 1 Kangwondaehak-gil, Chuncheon-si, Gangwon-do, 24341, Republic of Korea.
Marine Environmental Research Center, Korea Institute of Ocean Science and Technology, Haeyang-ro 385, Yeongdo-gu, Busan, 49111, Republic of Korea.
Sci Rep. 2020 Aug 6;10(1):13194. doi: 10.1038/s41598-020-70020-2.
Although the responses of North Atlantic Deep Water (NADW) is deeply connected to orbital rhythms, those under different tectonic and atmospheric boundary conditions remain unknown. Here, we report suborbitally resolved benthic foraminiferal stable isotope data from J-anomaly Ridge in the North Atlantic from ca. 26.4-26.0 Ma. Our results indicate that the formation of NADW during that time interval was increased during the obliquity-paced interglacial periods, similar to in the Plio-Pleistocene. During the late Oligocene, the interglacial poleward shifts of the stronger westerlies in the southern hemisphere, which occurred due to the higher thermal contrasts near the upper limit of the troposphere, reinforced the Antarctic Circumpolar Current (ACC) and, in turn, the Atlantic meridional overturning circulation (AMOC). However, such a response mode in deep ocean circulation did not occur during the middle Eocene because of different tectonic boundary conditions and the immature states of the ACC. Instead, the middle Eocene interglacial conditions weakened the formation of the proto-type NADW due to less heat loss rate in high-latitude regions of the North Atlantic during high obliquity periods. Our findings highlight the different responses of deep ocean circulation to orbital forcing and show that climate feedbacks can be largely sensitive to boundary conditions.
尽管北大西洋深层水(NADW)的响应与轨道节奏密切相关,但在不同构造和大气边界条件下的响应仍不清楚。在这里,我们报告了来自北大西洋 J 异常脊的亚轨道分辨率底栖有孔虫稳定同位素数据,时间约为 26.4-26.0 百万年前。我们的结果表明,在此期间,NADW 的形成在倾斜驱动的间冰期增加,类似于上新世-更新世。在上渐新世期间,南半球较强西风的间冰期向极地移动,这是由于对流层上限附近的热对比度较高所致,加强了南极环极流(ACC),进而加强了大西洋经向翻转环流(AMOC)。然而,由于不同的构造边界条件和 ACC 的不成熟状态,这种深海环流的响应模式在中始新世并未发生。相反,由于高倾斜期北大西洋高纬度地区的热量损失率较低,中始新世间冰期条件减弱了原型 NADW 的形成。我们的发现强调了深海环流对轨道强迫的不同响应,并表明气候反馈对边界条件的敏感性很大。