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Global azimuthal seismic anisotropy and the unique plate-motiondeformation of Australia

机译:全球方位角地震各向异性和澳大利亚独特的板块运动变形

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Differences in the thickness of the high-velocity lid underlying continents as imaged by seismic tomography, have fuelled a long debate on the origin of the 'roots' of continents. Some of these differences may be reconciled by observations of radial anisotropy between 250 and 300 km depth, with horizontally polarized shear waves travelling faster than vertically polarized ones. This azimuthally averaged anisotropy could arise from present-day deformation at the base of the plate, as has been found for shallower depths beneath ocean basins. Such deformation would also produce significant azimuthal variation, owing to the preferred alignment of highly anisotropic minerals. Here we report global observations of surface-wave azimuthal anisotropy, which indicate that only the continental portion of the Australian plate displays significant azimuthal anisotropy and strong correlation with present-day plate motion in the depth range 175-300 km. Beneath other continents, azimuthal anisotropy is only weakly correlated with plate motion and its depth location is similar to that found beneath oceans. We infer that the fast-moving Australian plate contains the only continental region with a sufficiently large deformation at its base to be transformed into azimuthal anisotropy. Simple shear leading to anisotropy with a plunging axis of symmetry may explain the smaller azimuthal anisotropy beneath other continents.
机译:地震层析成像所显示的各大洲下盖的高速盖厚度的差异,引发了关于各大洲“根源”起源的长期争论。其中一些差异可以通过观察250至300 km深度之间的径向各向异性来解决,其中水平极化切变波的传播速度快于垂直极化切变波。方位角平均各向异性可能是由于板块底部当前的变形引起的,正如在海盆下面较浅的深度所发现的那样。由于高度各向异性的矿物的优选排列,这种变形还将产生明显的方位角变化。在这里,我们报告了对表面波方位角各向异性的全球观测,这些观测结果表明,仅澳大利亚板块的大陆部分在175-300 km的深度范围内显示出显着的方位角各向异性,并与当今的板块运动密切相关。在其他大陆下,方位各向异性与板块运动仅具有微弱的相关性,其深度位置与海洋下方的位置相似。我们推断,快速移动的澳大利亚板块包含唯一在其底部具有足够大变形以转化为方位各向异性的大陆区域。简单的剪切导致对称性急剧下降的对称轴可能解释了其他大陆下方较小的方位各向异性。

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