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Using SHRIMP zircon dating to unravel tectonothermal events in arc environments. The early Palaeozoic arc of NW Iberia revisited

机译:使用SHRIMP锆石测年解开电弧环境中的构造热事件。重温伊比利亚西北部的早古生代弧

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摘要

Dating of zircon cores and rims from granulites developed in a shear zone provides insights into the complex relationship between magmatism and metamorphism in the deep roots of arc environments. The granulites belong to the uppermost allochthonous terrane of the NW Iberian Massif, which forms part of a Cambro-Ordovician magmatic arc developed in the peri-Gondwanan realm. The obtained zircon ages confirm that voluminous calc-alkaline magmatism peaked around 500 Ma and was shortly followed by granulite facies metamorphism accompanied by deformation at c. 480 Ma, giving a time framework for crustal heating, regional metamorphism, deformation and partial melting, the main processes that control the tectonothermal evolution of arc systems. Traces of this arc can be discontinuously followed in different massifs throughout the European Variscan Belt, and we propose that the uppermost allochthonous units of the NW Iberian Massif, together with the related terranes in Europe, constitute an independent and coherent terrane that drifted away from northern Gondwana prior to the Variscan collisional orogenesis.
机译:在剪切带中发育的粒状体中锆石核和轮辋的年代,为深入了解弧环境深部根部的岩浆作用和变质作用之间的复杂关系提供了见识。这些花岗石属于西北伊比利亚地块的最上层异质地层,构成了冈多瓦南外围地区坎布罗-奥陶纪岩浆弧的一部分。所获得的锆石年龄证实,大量的钙碱性岩浆作用在500 Ma左右达到峰值,随后不久便出现了花岗石相变质作用,并在c处变形。 480 Ma,给出了地壳加热,区域变质,变形和部分熔融的时间框架,这是控制电弧系统构造热演化的主要过程。弧线的痕迹可以在整个欧洲瓦里斯卡纳带的不同断层中不连续地追踪,我们建议西北伊比利亚断层的最上层异源单元与欧洲相关的地层一起构成一个独立而连贯的地层,该地块从北端漂移而去。冈瓦纳在瓦里斯坎碰撞造山运动之前。

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