Asteroid impact, not volcanism, caused the end-Cretaceous dinosaur extinction

Author:

Chiarenza Alfio AlessandroORCID,Farnsworth AlexanderORCID,Mannion Philip D.ORCID,Lunt Daniel J.ORCID,Valdes Paul J.,Morgan Joanna V.,Allison Peter A.ORCID

Abstract

The Cretaceous/Paleogene mass extinction, 66 Ma, included the demise of non-avian dinosaurs. Intense debate has focused on the relative roles of Deccan volcanism and the Chicxulub asteroid impact as kill mechanisms for this event. Here, we combine fossil-occurrence data with paleoclimate and habitat suitability models to evaluate dinosaur habitability in the wake of various asteroid impact and Deccan volcanism scenarios. Asteroid impact models generate a prolonged cold winter that suppresses potential global dinosaur habitats. Conversely, long-term forcing from Deccan volcanism (carbon dioxide [CO2]-induced warming) leads to increased habitat suitability. Short-term (aerosol cooling) volcanism still allows equatorial habitability. These results support the asteroid impact as the main driver of the non-avian dinosaur extinction. By contrast, induced warming from volcanism mitigated the most extreme effects of asteroid impact, potentially reducing the extinction severity.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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