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Tracing ultrahigh-pressure metamorphism at the catchment scale

机译:在流域尺度上追踪超高压变质作用

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摘要

Finding traces of ultrahigh-pressure (UHP) metamorphism in the geological record has huge implications for unravelling Earth’s geodynamic evolution, such as the onset of deep subduction. Usually, UHP rocks are identified by specific mineral inclusions like coesite and characteristic petrographic features resulting from its (partial) transformation to the lower-pressure polymorph quartz in thin sections of crystalline rocks. This approach relies on very small sample size and is thus limited to a few points within large regions. Here we present the first findings of coesite inclusions in detrital mineral grains. The intact monomineralic inclusions were detected in garnets from a modern sand sample from the Western Gneiss Region, SW Norway. They represent the first known intact monomineralic coesite inclusions in the Western Gneiss Region, and their presence is suggested to indicate the erosion of UHP rocks in the sampled catchment area. The novel approach introduced here allows for tracing UHP metamorphic rocks and their erosional products at the catchment scale instead of being limited to outcrops of crystalline rocks. It opens new avenues for the prospective exploration of UHP metamorphism in Earth’s geological record.
机译:在地质记录中发现超高压(UHP)变质的痕迹对于揭示地球的地球动力学演化(如深层俯冲的发生)具有重大意义。通常,UHP岩石通过特定的矿物包裹体(如堇青石)和特征性的岩石学特征来识别,这些特征是由其(部分)转变为结晶岩石薄片中的低压多晶型石英所致。这种方法依赖于非常小的样本量,因此仅限于大区域内的几个点。在这里,我们介绍了碎屑矿物颗粒中的堇青石包裹体的第一个发现。在来自挪威西南部西部片麻岩地区的现代砂岩样品中的石榴石中检测到完整的单矿物内含物。它们代表了西部片麻岩地区第一个已知的完整的完整的矿物矿物包埋物,建议它们的存在表明UHP岩石在被采样的集水区受到侵蚀。这里介绍的新方法允许在集水区范围内追踪超高压变质岩及其侵蚀产物,而不仅限于结晶岩露头。它为地球地质记录中超高压变质的前瞻性探索开辟了新途径。

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