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Towards absolute plate motions constrained by lower-mantle slab remnants

机译:朝向受下地幔平板残余物约束的绝对板块运动

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Since the first reconstruction of the supercontinent Pangaea, key advances in plate tectonic reconstructions have been made(1-6). Although the movement of tectonic plates since the start of the mid-Cretaceous period (similar to 100 million years (Myr) ago) is relatively well understood(1,2), the longitudinal position of plates before this period is not constrained at all. Here, we use a global mantle tomography model(7) to estimate the longitude of past oceanic subduction zones. We identify 28 remnants of oceanic plates that were subducted into the lower mantle and link these to the mountain building zones from which they are likely to have originated. Assuming that these remnants sank vertically through the mantle, we reconstruct the longitude at which they were subducted. Our estimates for the location of the subduction zones are offset by up to 18 degrees compared with plate tectonic reconstructions for the corresponding period. We did not detect oceanic plate remnants from the Carboniferous period (similar to 300-360 Myr ago), or before, suggesting that the tomographic visibility of subduction is limited to the past 300 Myr.
机译:自超大陆Pangaea首次重建以来,板块构造重建取得了重要进展(1-6)。尽管自白垩纪中期(类似于1亿年(Myr)以前)以来构造板块的运动已得到相对较好的理解(1,2),但在此期间之前板块的纵向位置根本不受限制。在这里,我们使用全球地幔层析成像模型(7)估算过去的海洋俯冲带的经度。我们确定了俯冲到下地幔中的28个洋板残余,并将它们与它们可能起源于的山区建筑区域联系起来。假设这些残余物垂直穿过地幔沉没,我们重建了它们被俯冲的经度。与相应时期的板块构造重建相比,我们对俯冲带位置的估计最多可偏移18度。我们没有检测到石炭纪时期(类似于300-360 Myr之前)或之前的洋洋板块残留,这表明俯冲的层析成像可见度仅限于过去的300 Myr。

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