A40Ar/39Ar and U–Pb timescale for the Cretaceous Western Interior Basin, North America

Author:

Singer Brad S.1ORCID,Jicha Brian R.1ORCID,Sawyer David A.2,Walaszczyk Ireneusz3,Landman Neil4ORCID,Sageman Bradley B.5ORCID,McKinney Kevin C.6

Affiliation:

1. Department of Geoscience, University of Wisconsin-Madison, 1215 West Dayton Street, Madison, WI 53706, USA

2. University of Colorado, Boulder; 955 Adams Street, Denver, CO 80206, USA

3. Faculty of Geology, University of Warsaw, Al. Zwirki i Wigury 92, PL-02-089, Warszawa, Poland

4. Department of Invertebrate Paleontology, American Museum of Natural History, New York, USA

5. Department of Earth and Planetary Sciences, Northwestern University, Evanston, IL, USA

6. Department of Paleobiology, National Museum of Natural History, Smithsonian Institution, Washington, DC, USA

Abstract

AbstractImprovements in analytical procedures in parallel with intercalibration of40Ar/39Ar and U–Pb methods and laboratories, spurred since 2003 by the EarthTime geochronology community initiative, have led to ±2σuncertainties of the order of 50–100 ka, or better, for Cretaceous ash beds. Assembled here are 5740Ar/39Ar ages and 17238U–206Pb ages of volcanic ash beds in strata of the Western Interior Basin of North America determined during the last 15 years since these improvements have been made. These age determinations span from 108 Ma in the middle Albian to 66 Ma in the latest Maastrichtian. Five of the40Ar/39Ar ages from Campanian and Maastrichtian strata are newly reported here, whereas the remainder are from the literature. Building on the pioneering work of John Obradovich and Bill Cobban, where possible these age determinations are tied to ammonite and inoceramid biostratigraphy. For most ash beds, the temporal uncertainties, unlike earlier timescales for the Western Interior Basin, are much shorter than the duration of fossil biozones. Proposed ages for stage boundaries based on this review of the radioisotopic ages include: Maastrichtian–Danian, 66.02 ± 0.08 Ma; Campanian–Maastrichtian, 72.20 ± 0.20 Ma; Santonian–Campanian, 84.19 ± 0.38 Ma; Coniacian–Santonian, 86.49 ± 0.44 Ma; Turonian–Coniacian, 89.75 ± 0.38 Ma; Cenomanian–Turonian, 93.95 ± 0.05 Ma; Albian–Cenomanian, 100.00 ± 0.40 Ma.Six bentonites that occur within theVascoceras diartianum, Neocardiocerus juddi, Prionocylus macombi, Scaphites preventricosus, Scaphites depressusandDesmoscaphites bassleriammonite zones, dated using both40Ar/39Ar and U–Pb methods, yield ages in agreement to within 150 ka and form the backbone of the Western Interior Basin timescale. In parallel, improvements in the taxonomy of ammonites, inoceramids and foraminifera, and recent field work, are better establishing the biostratigraphic framework for these age determinations. Each of these efforts contributes to the progressive refinement of the chronostratigraphic framework of the Western Interior Basin, and enhances its utility for global correlation.

Funder

Division of Earth Sciences

Publisher

Geological Society of London

Subject

Geology,Ocean Engineering,Water Science and Technology

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