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Fine-scale structure of the mid-mantle characterised by global stacks of PP precursors

机译:由全球堆叠的PP前体为特征的中间地幔的细尺结构

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Subduction zones are likely a major source of compositional heterogeneities in the mantle, which may preserve a record of the subduction history and mantle convection processes. The fine-scale structure associated with mantle heterogeneities can be studied using the scattered seismic wavefield that arrives as coda to or as energy preceding many body wave arrivals. In this study we analyse precursors to PP by creating stacks recorded at globally distributed stations. We create stacks aligned on the PP arrival in 5 degrees distance bins (with range 70-120 degrees) from 600 earthquakes recorded at 193 stations stacking a total of 7320 seismic records. As the energy trailing the direct P arrival, the P coda, interferes with the PP precursors, we suppress the P coda by subtracting a best fitting exponential curve to this energy. The resultant stacks show that PP precursors related to scattering from heterogeneities in the mantle are present for all distances. Lateral variations are explored by producing two regional stacks across the Atlantic and Pacific hemispheres, but we find only negligible differences in the precursory signature between these two regions. The similarity of these two regions suggests that well mixed subducted material can survive at upper and mid-mantle depth. To describe the scattered wavefield in the mantle, we compare the global stacks to synthetic seismograms generated using a Monte Carlo phonon scattering technique. We propose a best-fitting layered heterogeneity model, BRT2017, characterised by a three layer mantle with a background heterogeneity strength (epsilon = 0.8%) and a depth-interval of increased heterogeneity strength (epsilon = 1%) between 1000 km and 1800 km. The scalelength of heterogeneity is found to be 8 km throughout the mantle. Since mantle heterogeneity of 8 km scale may be linked to subducted oceanic crust, the detection of increased heterogeneity at mid-mantle depths could be associated with stalled slabs due to increases in viscosity, supporting recent observations of mantle viscosity increases due to the iron spin transition at depths of similar to 1000 km. (C) 2017 The Authors. Published by Elsevier B.V.
机译:俯冲带很可能在地幔组成不均匀性,它可以保存俯冲历史和地幔对流过程的一个记录的主要来源。用非均质地幔相关联的精细尺度结构可以使用到达作为结尾,或者作为前述多体波波至能量散射地震波场进行研究。在这项研究中,我们通过创建记录在全球分布的站堆栈分析前体PP。我们创建对PP到达在从记录在193个站600级地震5个距离箱(具有范围70-120度)堆叠共计7320个地震记录对齐堆叠。由于能源尾随直达P到来时,P结尾,与PP前体干涉,我们抑制减去最佳拟合指数曲线,以这种能量在P结尾。将所得的叠层表明,与从在非均质地幔散射PP前体存在于所有的距离。横向变化是由生产跨越大西洋和太平洋半球两个区域栈探讨,但我们发现只有在这两个地区之间的前兆签名微不足道的差异。这两个区域的相似性表明,充分混合俯冲材料可以在上部和中间地幔深度生存。为了描述在地幔散射波场,我们比较了全球堆栈使用蒙特卡罗声子散射技术生成合成地震记录。我们提出了一个最佳拟合层状异质模型,BRT2017,其特征在于通过用背景异质性强度(ε-= 0.8%)的三层地幔和1000公里,1800公里之间的深度间隔的增加异质性强度(ε-= 1%) 。异质性的标尺长度被发现是整个地幔8公里。由于8公里规模的地幔异质性可以被链接到俯冲洋壳,增加的异质性在水深中间地幔的检测可以与停顿板坯相关联由于粘度由于铁自旋过渡增大,支撑最近的地幔粘度上升的观测在类似千公里深处。 (c)2017年作者。由elsevier b.v出版。

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