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Earth\u27s oldest mantle fabrics indicate Eoarchaean subduction

机译:地球上最古老的地幔构造表明是欧陶纪俯冲

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摘要

The extension of subduction processes into the Eoarchaean era (4.0-3.6 Ga) is controversial. The oldest reported terrestrial olivine, from two dunite lenses within the ~3,720 Ma Isua supracrustal belt in Greenland, record a shape-preferred orientation of olivine crystals defining a weak foliation and a well-defined lattice-preferred orientation (LPO). [001] parallel to the maximum finite elongation direction and (010) perpendicular to the foliation plane define a B-type LPO. In the modern Earth such fabrics are associated with deformation of mantle rocks in the hanging wall of subduction systems; an interpretation supported by experiments. Here we show that the presence of B-type fabrics in the studied Isua dunites is consistent with a mantle origin and a supra-subduction mantle wedge setting, the latter supported by compositional data from nearby mafic rocks. Our results provide independent microstructural data consistent with the operation of Eoarchaean subduction and indicate that microstructural analyses of ancient ultramafic rocks provide a valuable record of Archaean geodynamics.
机译:将俯冲过程扩展到Eoarchaean时代(4.0-3.6 Ga)是有争议的。据报道,最古老的陆地橄榄石来自格陵兰岛约3,720 Ma Isua上壳带中的两个榴辉岩透镜,记录了橄榄石晶体的形状优先取向,定义了弱叶性和明确的晶格优先取向(LPO)。平行于最大有限伸长方向的[001]和垂直于叶面的(010)定义了B型LPO。在现代地球中,这种织物与俯冲系统悬挂壁中的地幔岩石变形有关。实验支持的解释。在这里,我们表明,在研究的伊苏阿双峰中B型织物的存在与地幔成因和超俯冲地幔楔形构造是一致的,后者由附近镁铁质岩石的成分数据所支持。我们的结果提供了与Eoarchaean俯冲作用相一致的独立微结构数据,并表明古代超镁铁质岩石的微结构分析提供了Archaean地球动力学的宝贵记录。

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