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地球下地幔的结构与动力学

Structure and dynamics of Earth's lower mantle.

作者信息

Garnero Edward J, McNamara Allen K

机构信息

School of Earth and Space Exploration, Arizona State University, Box 871404, Tempe, AZ 85287, USA.

出版信息

Science. 2008 May 2;320(5876):626-8. doi: 10.1126/science.1148028.

Abstract

Processes within the lowest several hundred kilometers of Earth's rocky mantle play a critical role in the evolution of the planet. Understanding Earth's lower mantle requires putting recent seismic and mineral physics discoveries into a self-consistent, geodynamically feasible context. Two nearly antipodal large low-shear-velocity provinces in the deep mantle likely represent chemically distinct and denser material. High-resolution seismological studies have revealed laterally varying seismic velocity discontinuities in the deepest few hundred kilometers, consistent with a phase transition from perovskite to post-perovskite. In the deepest tens of kilometers of the mantle, isolated pockets of ultralow seismic velocities may denote Earth's deepest magma chamber.

摘要

地球岩石地幔最底部几百公里范围内的过程在地球演化中起着关键作用。要了解地球的下地幔,需要将近期的地震学和矿物物理学发现置于一个自洽的、地球动力学上可行的背景中。地幔深处两个几乎对映的大型低剪切波速区可能代表化学性质不同且密度更大的物质。高分辨率地震学研究揭示了最深处几百公里范围内地震波速度的横向变化不连续性,这与钙钛矿到后钙钛矿的相变一致。在地幔最深处的几十公里范围内,孤立的超低地震波速区域可能意味着地球最深的岩浆房。

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