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Using Convolutional Neural Network to Determine Time Window for Analyzing Local Shear‐Wave Splitting Measurements
A Time‐Domain Approach for Accurate Spectral Source Estimation with Application to Ridgecrest, California, Earthquakes
Revisiting the Ridgecrest Aftershock Catalog Using a Modified Source‐Scanning Algorithm Applied to Multiple Dense Local Arrays
Toppling of a Trona Pinnacles Spire following the M w 5.5 Ridgecrest Aftershock of June 2020
Geologic map of Slate Range Crossing area, California, USA
Partitioning Ground Motion Uncertainty When Conditioned on Station Data
Emergence of Low‐Frequency Aftershocks of the 2019 Ridgecrest Earthquake Sequence
Rapid Earthquake Source Description Using Variometric‐Derived GPS Displacements toward Application to the 2019 M w 7.1 Ridgecrest Earthquake
Refinements to the Graves–Pitarka Kinematic Rupture Generator, Including a Dynamically Consistent Slip‐Rate Function, Applied to the 2019 M w 7.1 Ridgecrest Earthquake
Improvements to the Third Uniform California Earthquake Rupture Forecast ETAS Model (UCERF3‐ETAS)
Comparison of Near‐Fault Displacement Interpretations from Field and Aerial Data for the M 6.5 and 7.1 Ridgecrest Earthquake Sequence Ruptures
Radiocarbon and paleomagnetic chronology of the Searles Lake Formation, San Bernardino County, California, USA
ABSTRACT The Searles Lake Formation in Searles Valley, southeastern California, represents deposition of the paleo–Owens River into a Pleistocene and Holocene pluvial terminal lake. A prior 32–10 ka estimated age for the upper part of the Searles Lake Formation relied on uncalibrated, conventional radiocarbon dates. We present accelerator mass spectrometer radiocarbon dates that indicate the base of the Searles Lake Formation at the Poison Canyon type section is 46 ka. That age is consistent with paleomagnetic data at Poison Canyon and the Tire Farm locality, which record high-latitude Southern Hemisphere virtual geomagnetic poles that we assign to the 41 ka Laschamp excursion. The presence of Searles Lake at 46–43 ka also is consistent with a Pacific storm track that extended south of 37.5°N at that time. At the head of Salt Wells Valley–Poison Canyon, sediments that we interpret as a Searles Lake highstand were radiocarbon dated at 14.1 ka.