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Internal deformation of the subducted Nazca slab inferred from seismic anisotropy

机译:从地震各向异性推断俯冲纳斯卡板的内部变形

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Within oceanic lithosphere a fossilized fabric is often preserved originating from the time of plate formation. Such fabric is thought to form at the mid-ocean ridge when olivine crystals align with the direction of plate spreading(1,2). It is unclear, however, whether this fossil fabric is preserved within slabs during subduction or overprinted by subduction-induced deformation. The alignment of olivine crystals, such as within fossil fabrics, can generate anisotropy that is sensed by passing seismic waves. Seismic anisotropy is therefore a useful tool for investigating the dynamics of subduction zones, but it has so far proved difficult to observe the anisotropic properties of the subducted slab itself. Here we analyse seismic anisotropy in the subducted Nazca slab beneath Peru and find that the fast direction of seismic wave propagation aligns with the contours of the slab. We use numerical modelling to simulate the olivine fabric created at the mid-ocean ridge, but find it is inconsistent with our observations of seismic anisotropy in the subducted Nazca slab. Instead we find that an orientation of the olivine crystal fast axes aligned parallel to the strike of the slab provides the best fit, consistent with along-strike extension induced by flattening of the slab during subduction (A. Kumar et al., manuscript in preparation). We conclude that the fossil fabric has been overprinted during subduction and that the Nazca slab must therefore be sufficiently weak to undergo internal deformation.
机译:在海洋岩石圈中,通常保留了源自板块形成时期的化石织物。当橄榄石晶体与板片扩散的方向对齐时,这种织物被认为是在洋中脊形成的(1,2)。然而,目前尚不清楚这种化石织物是在俯冲过程中保留在平板中还是因俯冲引起的变形而被套印。橄榄石晶体的排列(例如在化石织物中)会产生各向异性,该各向异性可以通过地震波来感知。因此,地震各向异性是研究俯冲带动力学的有用工具,但迄今为止,它很难观测到俯冲板自身的各向异性。在这里,我们分析了秘鲁下俯冲的纳斯卡板中的地震各向异性,发现地震波传播的快速方向与板的轮廓一致。我们使用数值模型来模拟在洋中脊形成的橄榄石结构,但发现它与我们在俯冲的纳斯卡平板中对地震各向异性的观察结果不一致。取而代之的是,我们发现橄榄石晶体快轴的方向平行于板坯的走向可以提供最佳的拟合度,这与俯冲过程中板坯变平引起的沿板条延伸(A.Kumar等人,准备中的手稿) )。我们得出的结论是,化石织物在俯冲过程中被套印,因此纳斯卡板必须足够脆弱才能经受内部变形。

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