Published July 1992 | Version public
Journal Article

1.08 Ga diabase sills in the Pahrump Group, California: Implications for development of the Cordilleran miogeocline

  • 1. ROR icon Royal Ontario Museum
  • 2. ROR icon Massachusetts Institute of Technology

Abstract

U-Pb baddeleyite ages of 1087 ±3 and 1069 ±3 Ma for twodiabase sills that intrude the Crystal Spring Formation of the Pahrump Group, southeastern California, provide a minimum estimate for the depositional age of the Crystal Spring Formation. The new ages high-light the potential range in deposition ages for the Pahrump Group, from ≥1087 Ma to possibly as young as 600 Ma for Kingston Peak glaciogenic sediments. Consequently, there probably are significant disconformities within the Pahrump Group that separate unrelated, tectonically distinct episodes of basin subsidence. The Crystal Spring and Beck Spring Formations are considered to be platform-cover rocks preserved as a result of block faulting during deposition of the upper Kingston Peak Formation. The age of the Pahrump sills is in excellent agreement with the age of sills that intrude the Apache Group (central Arizona) and the Unkar Group (Grand Canyon) and supports earlier correlations of those units.

Additional Information

© 1992 Geological Society of America. Manuscript received December 27, 1991; Revised manuscript received March 12, 1992; Manuscript accepted March 23, 1992. The U-Pb research at the Royal Ontario Museum lab is funded primarily through a National Sciences and Engineering Research Council grant to T. Krogh. We appreciate the efforts of the museum geochronology staff in maintaining a smooth operation. Other support was provided by National Science Foundation grant EAR-9058199 to Grotzinger. We thank S. Bowring, J. Cooper, C. Frost, K. Hodges, and J. Wooden for reviewing earlier versions of the manuscript.

Additional details

Identifiers

Eprint ID
50241
DOI
10.1130/0091-7613(1992)020<0637:GDSITP>2.3.CO;2
Resolver ID
CaltechAUTHORS:20141007-143703154

Funding

Natural Sciences and Engineering Research Council of Canada (NSERC)
NSF
EAR-9058199

Dates

Created
2014-10-09
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Updated
2021-11-10
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