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Forced subduction initiation recorded in the sole and crust of the Semail Ophiolite of Oman

机译:在阿曼糖氨矿石肉体肉体的唯一和外壳中记录了强制俯冲开始

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Subduction zones are unique to Earth and fundamental in its evolution, yet we still know little about the causes and mechanisms of their initiation. Numerical models show that far-field forcing may cause subduction initiation at weak pre-existing structures, while inferences from modern subduction zones suggest initiation through spontaneous lithospheric gravitational collapse. For both endmembers, the timing of subduction inception corresponds with initial lower plate burial, whereas coeval or delayed extension in the upper plate are diagnostic of spontaneous or forced subduction initiation, respectively. In modern systems, the earliest extension-related upper plate rocks are found in forearcs, but lower plate rocks that recorded initial burial have been subducted and are inaccessible. Here, we investigate a fossil system, the archetypal Semail Ophiolite of Oman, which exposes both lower and upper plate relics of incipient subduction stages. We show with Lu-Hf and U-Pb geochronology of the lower and upper plate material that initial burial of the lower plate occurred before 104 million years ago, predating upper plate extension and the formation of Semail oceanic crust by at least 8 Myr. Such a time lag reveals far-field forced subduction initiation and provides unequivocal, direct evidence for a subduction initiation mechanism in the geological record.
机译:俯冲区域对地球和进化中的基础是独一无二的,但我们仍然对其启动的原因和机制知之甚少。数值模型表明,远场迫使可能导致弱预先存在的结构中的俯冲开始,而现代俯冲区的推论建议通过自发性岩石重力崩溃的启动。对于两个终端,俯冲初始化的时序对应于初始下板埋地,而上板中的锁定或延迟延伸分别是自发或强制俯冲开始的诊断。在现代系统中,最早的延伸相关的上板岩石是在前臂中发现的,但录制初始埋葬的下板岩石已被压制并且无法访问。在这里,我们研究了阿曼的阿曼原型糖石的化石系统,这暴露了初期俯冲阶段的下板和上板叙事。我们用Lu-HF和U-PB地球化板和上板材料显示,初始埋入的下板在1.04亿年前发生,预测上板延伸和糖类海底的形成至少8 MYR。这种时间滞后显示出远场强制潜水起始,并提供了不确定的地质记录中的俯冲启动机制的直接证据。

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