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Archaean continental spreading inferred from seismic images of the Yilgarn Craton

机译:从伊莱尔恩·克拉顿的地震图像推断出考古欧式蔓延

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On the early Earth, oceanic plateaux similar to present-day Iceland are thought to have evolved into less dense microcontinents as they thickened by continued melt intrusion and crustal fractionation. These earliest continents may have been so weak on a hotter Earth that they collapsed laterally in response to thickening by further magmatic growth or tectonic imbrication. This continental spreading is likely to have resulted in the development of pervasive ductile strain fabrics in the deeper crust, which, if preserved, could generate seismic reflections. Here we present seismic images from the ancient core of the Archaean Yilgarn Craton of Australia that reveal shallowly dipping to horizontal reflections that pervade the middle and lower crust. We interpret these reflective fabrics as the result of widespread lateral crustal flow during the late stage of craton evolution approximately 2.66 to 2.61billion years ago, which coincided with the widespread intrusion of high-temperature crustal melts, as thickened early continental crust collapsed. The consequent subsidence of large regions of the upper crust, including volcanic and sedimentary greenstone rocks, in the hanging walls of listric mid-lower crustal ductile flow fabrics caused these rocks to drop beneath the granitic melts rising towards the surface, and did not involve Rayleigh-Taylor instabilities within a mostly mobile crust.
机译:在早期的地球上,海洋平原类似于当前的冰岛,被认为已经进化成较少密集的微观,因为它们通过持续的熔体侵入和地壳分级增厚。这些最早的大陆在较热的地球上可能如此弱,使得它们横向逐渐塌陷,以应对进一步的岩浆生长或构造侵略性的增稠。这种欧陆蔓延可能导致在深层地壳中开发普遍的韧性菌株织物,如果保留,可以产生地震反射。在这里,我们从澳大利亚的古老核心的古老核心呈现出地震图像,揭示了俯冲中间和下地壳的水平反射。我们将这些反射织物解释为在Craton Envolution的晚期阶段普遍的横向地壳,大约2.66至2.61亿年前,这与高温地壳熔体的广泛侵入,如加厚的早期大陆地壳崩溃。随后的上层地壳大区域沉降,包括火山和沉积的绿石岩石,在藏上的中下地壳延性流动织物的悬挂墙壁中导致这些岩石在花岗岩熔体下方朝向表面上升,并且没有涉及瑞利 - 在大多数移动地壳中的aylor稳定性。

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