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Insights into the geometry and evolution of the southern San Andreas fault from geophysical data, southern California
Geologic and geomorphic evidence for multi-phase history of strands of the San Andreas fault through the San Gorgonio Pass structural knot, southern California
Postseismic Relaxation Following the 2019 Ridgecrest, California, Earthquake Sequence
Validation of Fault Displacements from Dynamic Rupture Simulations against the Observations from the 1992 Landers Earthquake
What Is Fling Step? Its Theory, Simulation Method, and Applications to Strong Ground Motion near Surface Fault Ruptures
A ground motion based procedure to identify the earthquakes that are the most relevant for probabilistic seismic hazard analysis
Alluvial Fan Alteration Due to Debris-Flow Deposition, Incision, and Channel Migration at Forest Falls, California
An Energy‐Dependent Earthquake Moment–Frequency Distribution
New geodetic constraints on southern San Andreas fault-slip rates, San Gorgonio Pass, California
Incipient evolution of the Eastern California shear zone through the transpressional zone of the San Bernardino Mountains and San Gorgonio Pass, California
Considering fault interaction in estimates of absolute stress along faults in the San Gorgonio Pass region, southern California
Dynamic models of earthquake rupture along branch faults of the eastern San Gorgonio Pass region in California using complex fault structure
Correlation of Spectral Acceleration Values of Mainshock-Aftershock Ground Motion Pairs
ABSTRACT Conglomerate-clast analysis, sandstone petrology, and detrital zircon age data determine the provenance and correlation of the Middle Miocene Mint Canyon and Caliente Formations. Detrital zircon age assemblages and sandstone compositions confirm that the Mint Canyon Formation is the upstream equivalent of the southern Caliente Formation and that both are dissimilar to the Punchbowl Formation. The Mint Canyon and Caliente Formations are remnants of an axial drainage system that was likely confined by the ancestral Sierra Pelona/Blue Ridge to the north and ancestral San Gabriel Mountains to the south; sediments derived from these local highlands dominate in the Mint Canyon Formation. This study highlights the importance of integrated-methods analysis. Sandstone detrital modes capture the variability in sandstone composition and the degree of overlap between formations; conglomerate-clast compositional data show differences within the drainage system; distinct detrital zircon age assemblages implicate particular source terranes. Analysis of all these data sets provides a robust and complete characterization of the provenance of this confined drainage system.