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Anomalous K-Pg–aged seafloor attributed to impact-induced mid-ocean ridge magmatism

机译:K-Pg年龄异常的海底归因于撞击引起的洋中脊岩浆作用

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摘要

Eruptive phenomena at all scales, from hydrothermal geysers to flood basalts, can potentially be initiated or modulated by external mechanical perturbations. We present evidence for the triggering of magmatism on a global scale by the Chicxulub meteorite impact at the Cretaceous-Paleogene (K-Pg) boundary, recorded by transiently increased crustal production at mid-ocean ridges. Concentrated positive free-air gravity and coincident seafloor topographic anomalies, associated with seafloor created at fast-spreading rates, suggest volumes of excess magmatism in the range of ~105 to 106 km3. Widespread mobilization of existing mantle melt by post-impact seismic radiation can explain the volume and distribution of the anomalous crust. This massive but short-lived pulse of marine magmatism should be considered alongside the Chicxulub impact and Deccan Traps as a contributor to geochemical anomalies and environmental changes at K-Pg time.
机译:从热液间歇泉到玄武岩,各种规模的喷发现象都有可能由外部机械扰动引发或调节。我们提供了由白垩纪-古近纪(K-Pg)边界上的Chicxulub陨石撞击在全球范围内触发岩浆作用的证据,该记录是由洋中脊瞬时增加的地壳产量记录的。集中的自由空气正重力和与海底地形相吻合的异常现象,与以快速扩展的速度产生的海底有关,表明岩浆活动的过量体积在〜10 5 至10 6 km 3 。撞击后地震辐射对现有地幔熔体的广泛动员可以解释异常地壳的数量和分布。应该将这种巨大但短暂的海洋岩浆脉动与Chicxulub撞击和Deccan圈闭一起考虑,作为造成K-Pg时代地球化学异常和环境变化的原因。

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