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Two-stage subduction history under North America inferred from multiple-frequency tomography

机译:从多频层析成像推断北美地区两阶段俯冲历史

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Eastward subduction of oceanic tectonic plates has shaped the geologic history of western North America over the past 150 million years(1-4). The mountain-building and volcanism that brought forth the spectacular landscapes of the West are credited to the vast ancient Farallon plate, which interacted mechanically and chemically with the overlying continent as it plunged back into the mantle. Here, we use finite-frequency travel-time and amplitude measurements of teleseismic P-waves in seven frequency bands to obtain a high-resolution tomographic image to similar to 1,800km depth. We discover several large, previously unknown pieces of the plate which show that two distinct stages of whole-mantle subduction are present under North America. The currently active one descends from the Pacific northwest coast to 1,500km depth beneath the Great Plains, whereas its stalled predecessor occupies the transition zone and lower mantle beneath the eastern half of the continent. We argue that the separation between them is linked to the Laramide era 70-50Myr ago, a time of unusual volcanism and mountain-building far inland generally explained by an episode of extremely flat subduction(5).
机译:大洋构造板块向东俯冲塑造了过去1.5亿年以来北美西部的地质历史(1-4)。造山造林和火山活动带来了西方的壮丽景观,这归功于巨大的远古法拉隆板块,该板块与上覆的大陆机械地和化学地相互作用,并坠入地幔。在这里,我们使用有限频率的传播时间和在七个频带内对远震P波的振幅测量来获得类似于1800 km深度的高分辨率断层图像。我们发现了板块的几块大块的,以前未知的块,这表明在北美地区存在着两个不同的全幔俯冲阶段。目前活跃的一个从太平洋西北海岸下降到大平原以下1,500公里深度,而其停滞的前身则位于该大陆东半部以下的过渡带和下地幔。我们认为,它们之间的分离与70至50年前的拉拉米德时代有关,拉姆拉德时代是一个不寻常的火山活动和远处内陆山区的建设时期,通常由极度平坦的俯冲来解释(5)。

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