Berriasian–Valanginian Geochronology and Carbon-Isotope Stratigraphy of the Yellow Cat Member, Cedar Mountain Formation, Eastern Utah, USA

Author:

Joeckel Robert M.1,Suarez Celina A.2,McLean Noah M.3,Möller Andreas3ORCID,Ludvigson Gregory A.4,Suarez Marina B.3,Kirkland James I.5ORCID,Andrew Joseph3,Kiessling Spencer4,Hatzell Garrett A.2ORCID

Affiliation:

1. Conservation and Survey Division, School of Natural Resources, University of Nebraska-Lincoln, Lincoln, NE 68583-0996, USA

2. Department of Geosciences, University of Arkansas, Fayetteville, AR 72701, USA

3. Department of Geology, University of Kansas, Lawrence, KS 66045, USA

4. Kansas Geological Survey, University of Kansas, Lawrence, KS 66047, USA

5. Utah Geological Survey, Salt Lake City, UT 84116, USA

Abstract

The Early Cretaceous Yellow Cat Member of the terrestrial Cedar Mountain Formation in Utah, USA. has been interpreted as a “time-rich” unit because of its dinosaur fossils, prominent paleosols, and the results of preliminary chemostratigraphic and geochronologic studies. Herein, we refine prior interpretations with: (1) a new composite C-isotope chemostratigraphic profile from the well-known Utahraptor Ridge dinosaur site, which exhibits δ13C features tentatively interpreted as the Valanginian double-peak carbon isotope excursion (the so-called “Weissert Event”) and some unnamed Berriasian features; and (2) a new cryptotephra zircon eruption age of 135.10 ± 0.30/0.31/0.34 Ma (2σ) derived from the CA-ID-TIMS U-Pb analyses of zircons from a paleosol cryptotephra. Our interpretations of δ13C features on our chemostratigraphic profile, in the context of our new radiometric age, are compatible with at least one prior age model for the “Weissert Event” and the most recent revision of the Cretaceous time scale. Our results also support the interpretation that the Yellow Cat Member records a significant part of Early Cretaceous time.

Publisher

MDPI AG

Subject

General Earth and Planetary Sciences

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