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3D anisotropic structure of the Japan subduction zone

机译:日本俯冲区的3D各向异性结构

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摘要

How mantle materials flow and how intraslab fabrics align in subduction zones are two essential issues for clarifying material recycling between Earth’s interior and surface. Investigating seismic anisotropy is one of a few viable technologies that can directly answer these questions. However, the detailed anisotropic structure of subduction zones is still unclear. Under a general hexagonal symmetry anisotropy assumption, we develop a tomographic method to determine a high-resolution three-dimensional (3D) P wave anisotropic model of the Japan subduction zone by inverting 1,184,018 travel time data of local and teleseismic events. As a result, the 3D anisotropic structure in and around the dipping Pacific slab is firstly revealed. Our results show that slab deformation plays an important role in both mantle flow and intraslab fabric, and the widely observed trench-parallel anisotropy in the forearc is related to the intraslab deformation during the outer-rise yielding of the subducting plate.
机译:Mantle Materials Flow如何流动以及跨屏幕织物在俯冲区域中对齐的是用于澄清地球内部和表面之间的材料回收的重要问题。调查地震各向异性是几种可行的技术之一,可以直接回答这些问题。然而,俯冲区域的详细各向异性结构仍然不清楚。在一般的六边形对称各向异性假设下,我们开发了一种断层方法,通过反转1,184,018个旅行时间数据来确定日本俯冲区域的高分辨率三维(3D)P波各向异性模型。结果,首先揭示了浸渍太平洋板的3D各向异性结构。我们的研究结果表明,板坯变形在披风和intraslab织物中起重要作用,并且前臂中的广泛观察到的沟槽平行各向异性与介质屈服板的外层均升性期间的intraslab变形有关。

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