首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Upper mantle anisotropy beneath Peru from SKS splitting: Constraints on flat slab dynamics and interaction with the Nazca Ridge
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Upper mantle anisotropy beneath Peru from SKS splitting: Constraints on flat slab dynamics and interaction with the Nazca Ridge

机译:SKS分裂在秘鲁下方的上地幔各向异性:平板平板动力学的约束以及与纳斯卡山脊的相互作用

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摘要

The Peruvian flat slab is by far the largest region of flat subduction in the world today, but aspects of its structure and dynamics remain poorly understood. In particular, questions remain over whether the relatively narrow Nazca Ridge subducting beneath southern Peru provides dynamic support for the flat slab or it is just a passive feature. We investigate the dynamics and interaction of the Nazca Ridge and the flat slab system by studying upper mantle seismic anisotropy across southern Peru. We analyze shear wave splitting of SKS, sSKS, and PKS phases at 49 stations distributed across the area, primarily from the PerU Lithosphere and Slab Experiment (PULSE). We observe distinct spatial variations in anisotropic structure along strike, most notably a sharp transition from coherent splitting in the north to pervasive null (non-split) arrivals in the south, with the transition coinciding with the northern limit of the Nazca Ridge. For both anisotropic domains there is evidence for complex and multi-layered anisotropy. To the north of the ridge our *KS splitting measurements likely reflect trench-normal mantle flow beneath the flat slab. This signal is then modified by shallower anisotropic layers, most likely in the supra-slab mantle, but also potentially from within the slab. To the south the sub-slab mantle is similarly anisotropic, with a trench-oblique fast direction, but widespread nulls appear to reflect dramatic heterogeneity in anisotropic structure above the flat slab. Overall the regional anisotropic structure, and thus the pattern of deformation, appears to be closely tied to the location of the Nazca Ridge, which further suggests that the ridge plays a key role in the mantle dynamics of the Peruvian flat slab system. (C) 2014 Elsevier B.V. All rights reserved.
机译:迄今为止,秘鲁平板是世界上最大的平板俯冲区域,但其结构和动力学方面仍知之甚少。尤其是,秘鲁南部下方相对较窄的纳斯卡岭俯冲带是否为平坦平板提供了动力支撑还是仅仅是被动的功能,仍然存在疑问。通过研究整个秘鲁南部的上地幔地震各向异性,我们研究了纳斯卡岭和平板系统的动力学和相互作用。我们主要在PerU岩石圈和平板实验(PULSE)中分析了分布在该地区的49个站的SKS,sSKS和PKS相的剪切波分裂。我们观察到沿地震的各向异性结构存在明显的空间变化,最显着的变化是从北部的连贯裂变到南部的普遍零(非裂变)到达的急剧过渡,该过渡与纳斯卡岭的北部边界重合。对于两个各向异性域,都有复杂和多层各向异性的证据。在山脊的北部,我们的* KS分裂测量结果可能反映了平坦平板下方的沟渠垂直地幔流。然后,该信号被较浅的各向异性层修改,最有可能在超平板地幔中,但也有可能来自平板内部。在南部,次平板地幔是各向异性的,具有沟槽倾斜的快速方向,但广泛的零陷似乎反映了平坦平板上方各向异性结构的剧烈异质性。总体而言,区域各向异性结构以及变形模式似乎与纳斯卡山脊的位置紧密相关,这进一步表明该山脊在秘鲁平板结构系统的地幔动力学中起着关键作用。 (C)2014 Elsevier B.V.保留所有权利。

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