Early Pliocene deepening of the tropical Atlantic thermocline

C. V. D. van der Weijst, J. Winkelhorst, A. S. von der Heydt, G. Reichart, F. Sangiorgi, A. Sluijs
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Abstract

Abstract. The tropical thermocline may have played a crucial role in maintaining weaker sea surface temperature gradients during the early Pliocene and in the onset of late Pliocene northern hemisphere glaciation. Whereas the Pliocene Pacific thermocline evolution is well documented, complete records of Pliocene tropical Atlantic thermocline depths are limited to the Caribbean region. Here, we use the oxygen isotope gradient between surface to subsurface dwelling planktic foraminifera from Ocean Drilling Program Site 959 in the eastern equatorial Atlantic to track vertical changes in thermocline depth over the course of the Pliocene. This record shows that eastern equatorial Atlantic thermocline depth varied substantially during the early Pliocene, before finally deepening abruptly around 4.5 Ma to remain relatively stable until at least 2.8 Ma. Eastern equatorial Atlantic and Caribbean records are almost identical, suggesting a common control on the sudden step-wise thermocline deepening across the basin, in contrast to previous assumptions. The Pliocene evolution of the tropical Atlantic thermocline differs is remarkably from the Pacific, which is characterized by gradual basin-wide shoaling. It remains unclear what mechanisms were involved in the dichotomous thermocline evolutions. Whereas Central American Seaway closure may have shoaled the Pacific thermocline, it is not yet understood if and how this process may have deepened the Atlantic thermocline. A divergent evolution of temperatures of the source regions may explain the opposite thermocline developments observed, possibly amplified by a positive feedback loop involving tropical cyclone intensity.
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上新世早期热带大西洋温跃层的加深
摘要在上新世早期和上新世晚期北半球冰期开始时,热带温跃层可能在维持较弱的海面温度梯度方面发挥了关键作用。虽然上新世太平洋温跃层的演化有很好的文献记载,但上新世热带大西洋温跃层深度的完整记录仅限于加勒比地区。在这里,我们利用来自东赤道大西洋959海洋钻探计划站点的地表与地下栖息浮游有孔虫之间的氧同位素梯度来跟踪上新世期间温跃层深度的垂直变化。这一记录表明,东赤道大西洋温跃层深度在上新世早期发生了很大的变化,最终在4.5 Ma左右突然加深,并保持相对稳定,直到至少2.8 Ma。东赤道大西洋和加勒比海的记录几乎是相同的,与之前的假设相反,这表明对整个盆地突然逐步加深的温跃层有共同的控制。热带大西洋温跃层的上新世演化与太平洋的明显不同,其特征是逐渐的全盆地浅滩化。目前尚不清楚在二元温跃层演化中涉及到什么机制。尽管中美洲海道的关闭可能使太平洋温跃层变浅,但尚不清楚这一过程是否以及如何加深了大西洋温跃层。源区温度的发散演化可以解释观测到的相反的温跃层发展,可能被涉及热带气旋强度的正反馈循环放大。
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