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Slip rate for the Rose Canyon fault through San Diego, California, based on analysis of GPS data: Evidence for a potential Rose Canyon–San Miguel-Vallecitos fault connection? Slip rate for the Rose Canyon fault through San Diego, California, based on analysis of GPS data: Evidence for a potential Rose Canyon–San Miguel-Vallecitos fault connection?

The Rose Canyon fault is the southern extension of the larger Newport–Inglewood–Rose Canyon fault system, which represents a major structural boundary in the Inner Continental Borderland (ICB) offshore of southern California. Ten to fifteen percent of total plate boundary motion in southern California is thought to be accommodated by the faults of the ICB, but the exact distribution of...
Authors
Drake Moore Singleton, Jillian Maloney, Duncan Agnew, Thomas Rockwell

Probabilistic assessment of postfire debris-flow inundation in response to forecast rainfall Probabilistic assessment of postfire debris-flow inundation in response to forecast rainfall

Communities downstream of burned steep lands face increases in debris-flow hazards due to fire effects on soil and vegetation. Rapid postfire hazard assessments have traditionally focused on quantifying spatial variations in debris-flow likelihood and volume in response to design rainstorms. However, a methodology that provides estimates of debris-flow inundation downstream of burned...
Authors
A. B. Prescott, L. A. McGuire, K.-S. Jun, Katherine R. Barnhart, N. S. Oakley

Characteristics of the fault damage zone From high-resolution seismic imaging along the Palos Verdes Fault, California Characteristics of the fault damage zone From high-resolution seismic imaging along the Palos Verdes Fault, California

The distribution and intensity of fault damage zones provides insight into fault activity and its relationship to fluid flow in the crust. Presently, measures of the in-situ distribution of fault damage remain limited and along-strike studies are rare. This study focuses on an offshore section Palos Verdes Fault damage zone that spans 28 km, near Los Angeles, California. To investigate...
Authors
Travis Vincent Alongi, Emily Brodsky, Jared W. Kluesner, Daniel S. Brothers

The 17 January 1994 Northridge, California, earthquake: A retrospective analysis The 17 January 1994 Northridge, California, earthquake: A retrospective analysis

The 17 January 1994 Northridge, California, earthquake was a watershed event, with far-reaching societal and scientific impacts. The earthquake, which occurred in the early days of both broadband seismic networks and the Internet, spurred advances in seismic monitoring, real-time systems, and development of data products. Motivated by the 30th anniversary of the earthquake, we present a...
Authors
Susan E. Hough, Robert Graves, Elizabeth S. Cochran, Clara Yoon, James Luke Blair, Scott Haefner, David J. Wald, Vince Quitoriano

Geological context and significance of the clay-sulfate transition region in Mount Sharp, Gale crater, Mars: An integrated assessment based on orbiter and rover data Geological context and significance of the clay-sulfate transition region in Mount Sharp, Gale crater, Mars: An integrated assessment based on orbiter and rover data

On Mars, phyllosilicate (“clay”) minerals are often associated with older terrains, and sulfate minerals are associated with younger terrains, and this dichotomy is taken as evidence that Mars’ surface dried up over time. Therefore, in situ investigation of the Mount Sharp strata in Gale crater, which record a shift from dominantly clay-bearing to sulfate-bearing minerals, as seen in...
Authors
Melissa J. Meyer, Ralph E. Milliken, Kathryn M. Stack, Lauren A. Edgar, Elizabeth B. Rampe, Madison L. Turner, Kevin W. Lewis, Edwin S. Kite, Gwenael Caravaca, Ashwin R. Vasavada, William E. Dietrich, Alex B. Bryk, Olivier Gasnault, Stephane Le Mouelic, Christina H. Seeger, Rachel Y. Sheppard

Seismically detected cratering on Mars: Enhanced recent impact flux? Seismically detected cratering on Mars: Enhanced recent impact flux?

Seismic observations of impacts on Mars indicate a higher impact flux than previously measured. Using six confirmed seismic impact detections near the NASA InSight lander and two distant large impacts, we calculate appropriate scalings to compare these rates with lunar-based chronology models. We also update the impact rate from orbital observations using the most recent catalog of new...
Authors
Ingrid J. Daubar, Raphael F. Garcia, Alexander E. Stott, Benjamin Fernando, Gareth S. Collins, Colin M. Dundas, Natalia Wojcicka, Geraldine Zenhausern, Alfred S. McEwen, Simon C. Stahler, Matthew P. Golombek, Constantinos Charalambous, Domenico Giardini, Philippe Lognonne, W. Bruce Banerdt

Earthquake effects surveyed during the nineteenth century as ecological features of Chinookan tidelands Earthquake effects surveyed during the nineteenth century as ecological features of Chinookan tidelands

Lasting effects of a Cascadia earthquake in 1700 were documented during surveys of Chinookan tidelands near the mouth of the Columbia River between 1805 and 1868. The effects resemble estuarine consequences, near Anchorage, of the 1964 Alaska earthquake: fatal drowning of subsided meadows and forests by post-earthquake tides, rebirth of marshes and forests through post-earthquake...
Authors
Brian F. Atwater, David K. Yamaguchi, Jessie K. Pearl

Turbidite correlation for paleoseismology Turbidite correlation for paleoseismology

Marine turbidite paleoseismology relies on the assumption of synchronous triggering of turbidity currents by earthquake shaking to infer rupture extent and recurrence. Such inference commonly depends on age dating and correlation of the physical stratigraphy of deposits carried by turbidity currents (i.e., turbidites) across great distances. Along the Cascadia subduction zone, which lies...
Authors
Nora M. Nieminski, Zoltan Sylvester, Jake Covault, Joan S. Gomberg, Lydia M. Staisch, Ian McBrearty

Relatively stable pressure effects and time-increasing thermal contraction control Heber geothermal field deformation Relatively stable pressure effects and time-increasing thermal contraction control Heber geothermal field deformation

Due to geological complexities and observational gaps, it is challenging to identify the governing physical processes of geothermal field deformation including ground subsidence and earthquakes. In the west and east regions of the Heber Geothermal Field (HGF), decade-long subsidence was occurring despite injection of heat-depleted brines, along with transient reversals between uplift and
Authors
Guoyan Jiang, Andrew J. Barbour, Robert John Skoumal, Kathryn Zerbe Materna, Aren Crandall-Bear

Uncertainty in ground-motion-to-intensity conversions significantly affects earthquake early warning alert regions Uncertainty in ground-motion-to-intensity conversions significantly affects earthquake early warning alert regions

We examine how the choice of ground‐motion‐to‐intensity conversion equations (GMICEs) in earthquake early warning (EEW) systems affects resulting alert regions. We find that existing GMICEs can underestimate observed shaking at short rupture distances or overestimate the extent of low‐intensity shaking. Updated GMICEs that remove these biases would improve the accuracy of alert regions...
Authors
Jessie Saunders, Annemarie S. Baltay Sundstrom, Sarah E. Minson, Maren Bose

A survey of the severity of mental health symptoms in the planetary science community A survey of the severity of mental health symptoms in the planetary science community

There is a growing recognition of a mental health crisis within the academic and research communities. Members of the planetary science community have called for healthier work environments to improve mental well-being. As a preliminary step towards improving workplace culture, we sought to determine whether the broader mental health crisis extends to planetary science and to assess the...
Authors
David Trang, Christina E. Swafford, Tamar A. Kreps, Steven D. Vance, Jemma Davidson, Justin Filiberto, Lillian R. Ostrach, Christina R. Richey
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