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Seismic anisotropy and mantle flow below subducting slabs

机译:俯冲板下方的地震各向异性和地幔流

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摘要

Subduction is integral to mantle convection and plate tectonics, yet the role of the subslab mantle in this process is poorly understood. Some propose that decoupling from the slab permits widespread trench parallel flow in the subslab mantle, although the geodynamical feasibility of this has been questioned. Here, we use the source-side shear wave splitting technique to probe anisotropy beneath subducting slabs, enabling us to test petrofabric models and constrain the geometry of mantle fow. Our global dataset contains 6369 high quality measurements – spanning ⇠ 40, 000km of subduction zone trenches – over the complete range of available source depths (4 to 687 km) – and a large range of angles in the slab reference frame. We find that anisotropy in the subslab mantle is well characterised by tilted transverse isotropy with a slow-symmetry-axis pointing normal to the plane of the slab. This appears incompatible with purely trench-parallel flow models. On the other hand it is compatible with the idea that the asthenosphere is tilted and entrained during subduction. Trench parallel measurements are most commonly associated with shallow events (source depth < 50 km) – suggesting a separate region of anisotropy in the lithospheric slab. This may correspond to the shape preferred orientation of cracks, fractures, and faults opened by slab bending. Meanwhile the deepest events probe the upper lower mantle where splitting is found to be consistent with deformed bridgmanite.
机译:俯冲是地幔对流和板块构造不可或缺的部分,但人们对地下板幔在这一过程中的作用知之甚少。一些人提出,从板中解耦允许在板下地幔中广泛的沟渠平行流动,尽管对此在地球动力学上的可行性提出了质疑。在这里,我们使用源侧剪切波分裂技术来探测俯冲板下方的各向异性,从而使我们能够测试岩石构造模型并限制地幔流的几何形状。我们的全球数据集包含6369个高质量测量值-跨越⇠40,000km的俯冲带沟槽-在可用震源深度的整个范围内(4至687 km)以及平板参考系中的大角度范围。我们发现,亚板幔中的各向异性特征是横向的各向同性具有良好的特征,其中慢速对称轴指向法向于板的平面。这似乎与纯平行沟槽流动模型不兼容。另一方面,它与俯冲过程中软流圈倾斜和夹带的想法是一致的。平行的海沟测量通常与浅层事件有关(震源深度<50 km),这表明岩石圈平板中存在一个独立的各向异性区域。这可以对应于由于板坯弯曲而打开的裂缝,断裂和断层的形状优选取向。同时,最深的事件探测到上部下地幔,在该处发现分裂与变形的桥锰矿一致。

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