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A rapid burst in hotspot motion through the interaction of tectonics and deep mantle flow

机译:通过构造学和深地幔流的相互作用,热点运动迅速爆发

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摘要

Volcanic hotspot tracks featuring linear progressions in the age of volcanism are typical surface expressions of plate tectonic movement on top of narrow plumes of hot material within Earth\u27s mantle1. Seismic imaging reveals that these plumes can be of deep origin2-probably rooted on thermochemical structures in the lower mantle3, 4, 5, 6. Although palaeomagnetic and radiometric age data suggest that mantle flow can advect plume conduits laterally7, 8, the flow dynamics underlying the formation of the sharp bend occurring only in the Hawaiian-Emperor hotspot track in the Pacific Ocean remains enigmatic. Here we present palaeogeographically constrained numerical models of thermochemical convection and demonstrate that flow in the deep lower mantle under the north Pacific was anomalously vigorous between 100 million years ago and 50 million years ago as a consequence of long-lasting subduction systems, unlike those in the south Pacific. These models show a sharp bend in the Hawaiian-Emperor hotspot track arising from the interplay of plume tilt and the lateral advection of plume sources. The different trajectories of the Hawaiian and Louisville hotspot tracks arise from asymmetric deformation of thermochemical structures under the Pacific between 100 million years ago and 50 million years ago. This asymmetric deformation waned just before the Hawaiian-Emperor bend developed, owing to flow in the deepest lower mantle associated with slab descent in the north and south Pacific.
机译:具有火山作用时代线性发展特征的火山热点轨迹是地球地幔内热物质的狭窄羽状顶部上板块构造运动的典型表面表现。地震成像表明,这些羽状流可能起源较深2-可能起源于下地幔的热化学结构3、4、5、6。尽管古地磁和辐射年龄数据表明,地幔流可以横向平移羽状流道7、8,但其潜在的流动动力学仅在太平洋的夏威夷皇帝热点航迹中才形成的急转弯的形成仍是谜。在这里,我们介绍了受热化学对流作用的古地理约束数值模型,并证明了在1亿年前至5000万年前之间,北太平洋深部下地幔的流动异常剧烈,这是由于存在持久的俯冲系统所致。南太平洋。这些模型表明,由于羽流倾斜和羽流源的横向对流的相互作用,在夏威夷皇帝热点轨道上出现了急剧的弯曲。夏威夷和路易斯维尔热点轨迹的轨迹不同,是由于在一亿年前和五千万年前之间太平洋下的热化学结构的不对称变形。由于北太平洋和南太平洋平板下降的最深下地幔流动,这种不对称形变就在夏威夷帝国皇帝弯曲发生之前就消失了。

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