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大洋内俯冲作用塑造了科迪勒拉北美洲的聚合。

Intra-oceanic subduction shaped the assembly of Cordilleran North America.

机构信息

Department of Earth and Environmental Sciences, Ludwig-Maximilians-Universität, Theresienstrasse 41, 80333 Munich, Germany.

出版信息

Nature. 2013 Apr 4;496(7443):50-6. doi: 10.1038/nature12019.

Abstract

The western quarter of North America consists of accreted terranes--crustal blocks added over the past 200 million years--but the reason for this is unclear. The widely accepted explanation posits that the oceanic Farallon plate acted as a conveyor belt, sweeping terranes into the continental margin while subducting under it. Here we show that this hypothesis, which fails to explain many terrane complexities, is also inconsistent with new tomographic images of lower-mantle slabs, and with their locations relative to plate reconstructions. We offer a reinterpretation of North American palaeogeography and test it quantitatively: collision events are clearly recorded by slab geometry, and can be time calibrated and reconciled with plate reconstructions and surface geology. The seas west of Cretaceous North America must have resembled today's western Pacific, strung with island arcs. All proto-Pacific plates initially subducted into almost stationary, intra-oceanic trenches, and accumulated below as massive vertical slab walls. Above the slabs, long-lived volcanic archipelagos and subduction complexes grew. Crustal accretion occurred when North America overrode the archipelagos, causing major episodes of Cordilleran mountain building.

摘要

北美洲的西部由增生地体组成,这些地壳块体是在过去 2 亿年中添加的,但形成的原因尚不清楚。一个被广泛接受的解释是,大洋的法拉隆板块充当了输送带,将地体扫入大陆边缘,同时在其下方俯冲。在这里,我们表明,这一假说无法解释许多地体的复杂性,而且与新的下地幔板块图像以及它们相对于板块重建的位置也不一致。我们提出了对北美古地理的重新解释,并进行了定量检验:碰撞事件在地壳几何形状中得到了清晰的记录,可以进行时间标定,并与板块重建和地表地质相协调。白垩纪时期北美洲以西的海域必定与今天的西太平洋相似,布满了岛弧。所有的原太平洋板块最初都俯冲进入几乎静止的大洋内海沟,并在下面堆积成巨大的垂直板块墙。在板块上方,长期存在的火山群岛和俯冲杂岩生长。当北美洲跨越群岛时,发生了地壳增生,导致了科迪勒拉山脉的主要建造事件。

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