Pre-Pangean evolution of central southern Laurentia: Insights from zircon U/Pb geochronology, Marathon-Solitario fold-and-thrust belt, west Texas

Author:

Dickerson* Patricia W.1,Hall Blaine R.2,Stockli Daniel F.3,Stockli Lisa D.3,Hanson Richard E.4,Fanning C. Mark5,O'Sullivan Paul6

Affiliation:

1. American Geosciences Institute & Jackson School of Geosciences, University of Texas at Austin, Austin, Texas 78712, USA

2. Texas Parks & Wildlife Department (emeritus), P.O. Box 1262, Ft. Davis, Texas 79734, USA

3. Jackson School of Geosciences, University of Texas at Austin, Austin, Texas 78712, USA

4. School of Geology, Energy & the Environment, Texas Christian University, Ft. Worth, Texas 76129, USA

5. Research School of Earth Sciences, Australian National University, Canberra, ACT 2000, Australia

6. GeoSep Services, 1521 Pine Cone Road, Moscow, Idaho 83843, USA

Abstract

ABSTRACT Upper Cambrian through Middle Ordovician sedimentary strata of the Marathon/Solitario Basin (west Texas), which were folded and thrust-faulted during late Paleozoic Appalachian-Ouachita orogenesis, preserve evidence of the pre-Pangean history of the central southern Laurentian margin. New detrital zircon analyses reported here are from three Marathon Basin/Solitario formations: the upper Cambrian Dagger Flat Sandstone; the Lower Ordovician Marathon Formation, including the Rodrigues Tank Sandstone Member; and the Middle Ordovician Ft. Peña Formation. The far-southwestern outcrops of those Iapetus margin strata are within the Solitario dome (Presidio and Brewster Counties, Texas). Solitario zircon U/Pb geochronological results (laser ablation–inductively coupled plasma–mass spectrometry [LA-ICP-MS], sensitive high-resolution ion microprobe [SHRIMP]) expand the record of Cryogenian rifting as the Cuyania terrane separated from Laurentia. We evaluated these new data along with earlier geochronological and geochemical results from rift-related lava clasts in Lower–Middle Ordovician sedimentary subaqueous debris-flow deposits in the northwestern Marathon Basin. Deepening of the Iapetus seaway near the Laurentian margin (late Cambrian–Middle Ordovician) stimulated headward erosion of drainages, reflected in the systematic north-northwestward shift in zircon provenance from the west Texas Grenvillian and Southern Granite-Rhyolite Provinces to Yavapai-Mazatzal and Cheyenne Belt sources. The Cuyania rifted terrane underwent subduction at the western Gondwanan margin of the Iapetus Ocean in mid-Ordovician time (486 ± 7 Ma to 463 ± 4 Ma), and the resulting volcanism in the Famatina complex (Argentina) was most intense from ca. 472 to 468 Ma. Magmatic zircons from Ft. Peña bentonitic layers have identical U/Pb (488–468 Ma) and biostratigraphic (Darriwilian) ages to those from Famatinian bentonites at Talacasto (470 ± 5 Ma) in the Precordillera of Cuyania. Geologically constrained paleomagnetic reconstructions for 470 Ma depict the proximity of the Famatina arc, the rifted Cuyania terrane, and southern Laurentia at low southern latitudes (equator to ~30°S). These first U/Pb geochronological data from the Marathon/Solitario depocenter of western Iapetus appear to be compatible with such a configuration and can serve as test data for emerging tectonic interpretations.

Publisher

Geological Society of America

Reference82 articles.

1. Anan, F.S., 1965, Petrology and Paleocurrent Study of the Dagger Flat (Cambrian) Sandstone, Marathon Basin, Texas [M.A. thesis]: Austin, Texas, University of Texas at Austin, 175 p.

2. Stratigraphical evidence supporting the rifting, drifting and collision of the Laurentian Precordillera terrane of western Argentina;Astini,1998

3. The early Paleozoic evolution of the Argentine Precordillera as a Laurentian rifted, drifted and collided terrane: A geodynamic model;Astini;Geological Society of America Bulletin,1995

4. Salterella in the Argentine Precordillera: An early Cambrian paleobiogeographic indicator of Laurentian affinity;Astini;Palaeogeography, Palaeoclimatology, Palaeoecology,2004

5. The allochthony of the Argentine Precordillera 10 years later (1993–2003): A new paleobiogeographic test of the microcontinental model;Benedetto;Gondwana Research,2004

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