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Upper-mantle seismic anisotropy from SKS splitting in the South American stable platform: A test of asthenospheric flow models beneath the lithosphere

机译:南美稳定平台中来自SKS分裂的上地幔地震各向异性:岩石圈下方的软流圈流动模型的测试

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摘要

Upper-mantle seismic anisotropy has been extensively used to infer both present and past deformation processes at lithospheric and asthenospheric depths. Analysis of shear-wave splitting (mainly from core-refracted SKS phases) provides information regarding upper-mantle anisotropy. We present average measurements of fast-polarization directions at 21 new sites in poorly sampled regions of intra-plate South America, such as northern and northeastern Brazil. Despite sparse data coverage for the South American stable platform, consistent orientations are observed over hundreds of kilometers. Over most of the continent, the fast-polarization direction tends to be close to the absolute plate motion direction given by the hotspot reference model HS3-NUVEL-1A. A previous global comparison of the SKS fast-polarization directions with flow models of the upper mantle showed relatively poor correlation on the continents, which was interpreted as evidence for a large contribution of ""frozen"" anisotropy in the lithosphere. For the South American plate, our data indicate that one of the reasons for the poor correlation may have been the relatively coarse model of lithospheric thicknesses. We suggest that improved models of upper-mantle flow that are based on more detailed lithospheric thicknesses in South America may help to explain most of the observed anisotropy patterns.
机译:上地幔地震各向异性已被广泛用于推断岩石圈和软流圈深度的当前和过去的变形过程。剪切波分裂的分析(主要来自岩心折射的SKS相)提供了有关上地幔各向异性的信息。我们介绍了南美洲板块内采样较差的地区(如巴西北部和东北部)的21个新站点的快速极化方向的平均测量值。尽管南美稳定平台的数据覆盖稀疏,但在数百公里内仍观察到一致的方向。在整个大陆的大部分地区,快速极化方向趋于接近热点参考模型HS3-NUVEL-1A给出的绝对板块运动方向。先前对SKS快速极化方向与上地幔流动模型的全球比较显示,各大陆之间的相关性较差,这被解释为岩石圈“冻结”各向异性的巨大贡献的证据。对于南美板块,我们的数据表明,相关性差的原因之一可能是岩石圈厚度的相对粗略模型。我们建议,基于南美更详细的岩石圈厚度的上地幔流动模型的改进可能有助于解释大多数观测到的各向异性模式。

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