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首页> 外文期刊>Nature Communications >Southern Africa crustal anisotropy reveals coupled crust-mantle evolution for over 2 billion years
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Southern Africa crustal anisotropy reveals coupled crust-mantle evolution for over 2 billion years

机译:南部非洲地壳各向异性揭示了20亿多年来的耦合壳体地幔演变

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摘要

The long-term stability of Precambrian continental lithosphere depends on the rheology of the lithospheric mantle as well as the coupling between crust and mantle lithosphere, which may be inferred by seismic anisotropy. Anisotropy has never been detected in cratonic crust. Anisotropy in southern Africa, detected by the seismological SKS-splitting method, usually is attributed to the mantle due to asthenospheric flow or frozen-in features of the lithosphere. However, SKS-splitting cannot distinguish between anisotropy in the crust and the mantle. We observe strong seismic anisotropy in the crust of southern African cratons by Receiver Function analysis. Fast axes are uniform within tectonic units and parallel to SKS axes, orogenic strike in the Limpopo and Cape fold belts, and the strike of major dyke swarms. Parallel fast axes in the crust and mantle indicate coupled crust-mantle evolution for more than 2 billion years with implications for strong rheology of the lithosphere.
机译:普雷亚姆欧式岩石圈的长期稳定性取决于岩石树木地幔的流变学以及地壳和地幔岩石圈之间的耦合,可以通过地震各向异性推断。从未在克拉内地壳中检测到各向异性。由地震干扰分裂方法检测到非洲南部非洲的各向异性,通常由于岩石圈的哮喘流动或冷冻特征而归因于地幔。然而,SKS分裂不能区分地壳和地幔的各向异性。通过接收函数分析,我们观察南部非洲克拉氏裂虫地壳中的强烈地震各向异性。快速轴在构造单元内是均匀的,并平行于SKS轴,林蛙和海角折叠皮带的造口撞击,以及主要堤坝群的罢工。地壳和地幔中的平行快速轴表示耦合的地壳搭桥演变为20亿多年来,对岩石圈的强烈流变学具有影响。

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