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Evidence for igneous differentiation in Sudbury Igneous Complex and impact-driven evolution of terrestrial planet proto-crusts

机译:萨德伯里火成岩的火成分化证据和撞击驱动的地球行星原壳演化

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摘要

Bolide impact is a ubiquitous geological process in the Solar System, which produced craters and basins filled with impact melt sheets on the terrestrial planets. However, it remains controversial whether these sheets were able to undergo large-scale igneous differentiation, or not. Here, we report on the discovery of large discrete bodies of melanorites that occur throughout almost the entire stratigraphy of the 1.85-billion-year-old Sudbury Igneous Complex (SIC) – the best exposed impact melt sheet on Earth – and use them to reaffirm that conspicuous norite-gabbro-granophyre stratigraphy of the SIC is produced by fractional crystallization of an originally homogeneous impact melt of granodioritic composition. This implies that more ancient and compositionally primitive Hadean impact melt sheets on the Earth and other terrestrial planets also underwent large-volume igneous differentiation. The near-surface differentiation of these giant impact melt sheets may therefore have contributed to the evolution and lithological diversity of the proto-crust on terrestrial planets.
机译:硼化物撞击是太阳系中一个普遍存在的地质过程,在地球行星上产生了充满撞击熔岩的火山口和盆地。但是,这些薄片是否能够进行大规模的火成分化仍存在争议。在这里,我们报告发现了在18.5亿年历史的萨德伯里火成岩复合体(SIC)的几乎整个地层中发现的大型离散的黑闪石体,这是地球上暴露得最好的撞击熔体片,并用它们来证实SIC的显着的黑质-赤闪石-层状岩地层是通过对粒状二元组成的本来均匀的冲击熔体进行分步结晶而产生的。这暗示着地球和其他陆地行星上更古老,更原始的哈德族撞击融化层也经历了大体积的火成岩分化。因此,这些巨大的撞击熔体片的近地表分化可能有助于地球行星上原壳的演化和岩性多样性。

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