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The Juvenile Hafnium Isotope Signal as a Record of Supercontinent Cycles

机译:少年Ha同位素信号作为超大陆周期的记录

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摘要

Hf isotope ratios measured in igneous zircon are controlled by magmatic source, which may be linked to tectonic setting. Over the 200–500 Myr periodicity of the supercontinent cycle - the principal geological phenomenon controlling prevailing global tectonic style - juvenile Hf signals, i.e. most radiogenic, are typically measured in zircon from granites formed in arc settings (crustal growth), and evolved zircon Hf signals in granites formed in continent-collision settings (crustal reworking). Interrogations of Hf datasets for excursions related to Earth events commonly use the median value, however this may be equivocal due to magma mixing. The most juvenile part of the Hf signal is less influenced by crustal in-mixing, and arguably a more sensitive archive of Earth’s geodynamic state. We analyze the global Hf dataset for this juvenile signal, statistically correlating supercontinent amalgamation intervals with evolved Hf episodes, and breakup leading to re-assembly with juvenile Hf episodes. The juvenile Hf signal is more sensitive to Pangaea and Rodinia assembly, its amplitude increasing with successive cycles to a maximum with Gondwana assembly which may reflect enhanced subduction-erosion. We demonstrate that the juvenile Hf signal carries important information on prevailing global magmatic style, and thus tectonic processes.
机译:在火成锆石中测得的同位素比值受岩浆源控制,这可能与构造环境有关。在超大陆周期的200–500 Myr周期中,控制普遍全球构造样式的主要地质现象-Hf信号(即大多数放射源)通常是在锆石中从弧形环境(地壳生长)中形成的花岗岩和演化的锆石Hf中测量的。大陆碰撞环境中形成的花岗岩中的信号(地壳重做)。对与地球事件有关的短途旅行的Hf数据集的查询通常使用中间值,但是由于岩浆混合,这可能是模棱两可的。 Hf信号中最年轻的部分受地壳混合的影响较小,并且可以说是地球地球动力学状态的更敏感档案。我们分析了这个少年信号的全球Hf数据集,统计了超大陆合并间隔与演变的Hf发作的相关性,以及分解导致与青少年Hf发作的重新组装。少年Hf信号对Pangea和Rodinia组件更为敏感,其幅度随着连续周期的增加而增加,在Gondwana组件中达到最大值,这可能反映了俯冲侵蚀的增强。我们证明,幼年的f信号携带有关全球流行岩浆样式以及构造过程的重要信息。

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