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北美克拉通的岩石圈分层。

Lithospheric layering in the North American craton.

机构信息

Berkeley Seismological Laboratory, 209 McCone Hall, Berkeley, California 94720, USA.

出版信息

Nature. 2010 Aug 26;466(7310):1063-8. doi: 10.1038/nature09332.

Abstract

How cratons-extremely stable continental areas of the Earth's crust-formed and remained largely unchanged for more than 2,500 million years is much debated. Recent studies of seismic-wave receiver function data have detected a structural boundary under continental cratons at depths too shallow to be consistent with the lithosphere-asthenosphere boundary, as inferred from seismic tomography and other geophysical studies. Here we show that changes in the direction of azimuthal anisotropy with depth reveal the presence of two distinct lithospheric layers throughout the stable part of the North American continent. The top layer is thick ( approximately 150 km) under the Archaean core and tapers out on the surrounding Palaeozoic borders. Its thickness variations follow those of a highly depleted layer inferred from thermo-barometric analysis of xenoliths. The lithosphere-asthenosphere boundary is relatively flat (ranging from 180 to 240 km in depth), in agreement with the presence of a thermal conductive root that subsequently formed around the depleted chemical layer. Our findings tie together seismological, geochemical and geodynamical studies of the cratonic lithosphere in North America. They also suggest that the horizon detected in receiver function studies probably corresponds to the sharp mid-lithospheric boundary rather than to the more gradual lithosphere-asthenosphere boundary.

摘要

克拉通(地壳中非常稳定的大陆区域)是如何形成的,以及为何在超过 25 亿年的时间里基本保持不变,这是一个备受争议的问题。最近对地震波接收函数数据的研究在大陆克拉通下探测到了一个结构边界,其深度太浅,与从地震层析成像和其他地球物理研究推断的岩石圈-软流圈边界不一致。在这里,我们表明,方位各向异性随深度的变化揭示了北美洲稳定部分存在两个截然不同的岩石层。在太古核下方,顶层较厚(约 150 公里),并在周围的古生代边界处逐渐变薄。其厚度变化与从岩芯高温高压分析推断的高度耗尽层的变化一致。岩石圈-软流圈边界相对平坦(深度范围从 180 到 240 公里),这与随后在化学耗尽层周围形成的热导根的存在一致。我们的发现将北美克拉通岩石圈的地震学、地球化学和地球动力学研究联系起来。它们还表明,在接收函数研究中探测到的层面可能对应于更陡的中岩石圈边界,而不是更渐进的岩石圈-软流圈边界。

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