The first day of the Cenozoic

Author:

Gulick Sean P. S.ORCID,Bralower Timothy J.,Ormö Jens,Hall Brendon,Grice Kliti,Schaefer Bettina,Lyons Shelby,Freeman Katherine H.,Morgan Joanna V.,Artemieva Natalia,Kaskes Pim,de Graaff Sietze J.ORCID,Whalen Michael T.ORCID,Collins Gareth S.ORCID,Tikoo Sonia M.,Verhagen Christina,Christeson Gail L.,Claeys Philippe,Coolen Marco J. L.,Goderis StevenORCID,Goto Kazuhisa,Grieve Richard A. F.,McCall Naoma,Osinski Gordon R.,Rae Auriol S. P.,Riller Ulrich,Smit Jan,Vajda Vivi,Wittmann AxelORCID,

Abstract

Highly expanded Cretaceous–Paleogene (K-Pg) boundary section from the Chicxulub peak ring, recovered by International Ocean Discovery Program (IODP)–International Continental Scientific Drilling Program (ICDP) Expedition 364, provides an unprecedented window into the immediate aftermath of the impact. Site M0077 includes ∼130 m of impact melt rock and suevite deposited the first day of the Cenozoic covered by <1 m of micrite-rich carbonate deposited over subsequent weeks to years. We present an interpreted series of events based on analyses of these drill cores. Within minutes of the impact, centrally uplifted basement rock collapsed outward to form a peak ring capped in melt rock. Within tens of minutes, the peak ring was covered in ∼40 m of brecciated impact melt rock and coarse-grained suevite, including clasts possibly generated by melt–water interactions during ocean resurge. Within an hour, resurge crested the peak ring, depositing a 10-m-thick layer of suevite with increased particle roundness and sorting. Within hours, the full resurge deposit formed through settling and seiches, resulting in an 80-m-thick fining-upward, sorted suevite in the flooded crater. Within a day, the reflected rim-wave tsunami reached the crater, depositing a cross-bedded sand-to-fine gravel layer enriched in polycyclic aromatic hydrocarbons overlain by charcoal fragments. Generation of a deep crater open to the ocean allowed rapid flooding and sediment accumulation rates among the highest known in the geologic record. The high-resolution section provides insight into the impact environmental effects, including charcoal as evidence for impact-induced wildfires and a paucity of sulfur-rich evaporites from the target supporting rapid global cooling and darkness as extinction mechanisms.

Funder

International Ocean Discovery Program

National Science Foundation

Australia Research Council

RCUK | Natural Environment Research Council

Research Foundation Flanders

Spanish Ministry of Economy and Competitiveness

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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