Publications
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Wavelet Inversion for SliP (WISP): Open-source earthquake slip modeling software Wavelet Inversion for SliP (WISP): Open-source earthquake slip modeling software
Models of the spatiotemporal evolution of earthquake slip, termed finite-fault models, are a critical component of rapid earthquake and tsunami response, earthquake forecasting, seismic ground-motion estimates, and studies of earthquake kinematics. Here, we detail a newly released finite-fault modeling software, Wavelet Inversion for SliP (WISP), in use at the U.S. Geological Survey’s...
Authors
Dara Elyse Goldberg, Heather Elizabeth Hunsinger, Pablo Koch, Kirstie Lafon Haynie, Diego Melgar, Sebastian Riquelme
Use of precariously balanced rocks to constrain postglacial earthquake magnitudes in New England, United States Use of precariously balanced rocks to constrain postglacial earthquake magnitudes in New England, United States
We use the age and fragility of 13 precariously balanced rocks (PBRs) in Massachusetts, New Hampshire, and southwestern Maine to evaluate the estimated probabilistic seismic hazard (PSH) from the U.S. Geological Survey’s National Seismic Hazard Model (NSHM), and also develop a map of maximum postglacial earthquake magnitudes in the region. The PBRs are erratic boulders left behind by the...
Authors
Mark Stirling, Thomas L. Pratt
Detecting snow avalanche activity using infrasound: Hooker Valley, New Zealand Detecting snow avalanche activity using infrasound: Hooker Valley, New Zealand
Snow avalanches pose considerable hazards to people and infrastructure in alpine environments. Traditional avalanche monitoring relies on meteorological data and visual observations, which can be limited in scope and timeliness. Infrasound offers a promising complementary monitoring tool by detecting the low-frequency sound waves generated by avalanches. Here, we present infrasound and...
Authors
Leighton Watson, Aubrey Miller, Jacob F. Anderson, Liam Toney, Alberto Ardid
Preface to the focus section on intraplate earthquakes Preface to the focus section on intraplate earthquakes
More than a half century after plate tectonics provided an overarching framework to explain earthquakes along active plate boundaries, numerous theories have been proposed to explain where, why, and how often earthquakes occur well away from active plate boundaries, but a paradigm remains elusive. Even the classification of earthquakes away from active plate boundaries as "intraplate"...
Authors
Trevor I. Allen, Susan E. Hough, Oliver S. Boyd, Felix Waldhauser, Marcelo Assumpcao
Simulated ground motion dataset in the Azores Plateau, Portugal, on rock and soil sites Simulated ground motion dataset in the Azores Plateau, Portugal, on rock and soil sites
Building on a previously developed bedrock dataset, this study extends the Azores Plateau ground motion simulations to include soil-amplified records and introduces a comprehensive validation framework. Soil amplification is modeled using one-dimensional soil profiles. A stochastic source-based approach is employed to generate the dataset, incorporating randomization of input-model...
Authors
Shaghayegh Karimzadeh, S.M. Sajad Hussaini, Daniel Caicedo, Alexandra Carvalho, Sanaz Rezaeian, Paulo B. Lourenco
Low-frequency earthquakes track the motion of a captured slab fragment Low-frequency earthquakes track the motion of a captured slab fragment
Accurate tectonic models are essential for assessing seismic hazard and fault interactions. However, the plate configuration at the complex Mendocino triple junction, where the San Andreas Fault and the Cascadia subduction zone meet, remains uncertain. We analyzed fault slip associated with a recently identified zone of tectonic tremor and low-frequency earthquakes (LFEs) near the...
Authors
David R. Shelly, Amanda M. Thomas, Kathryn Z. Materna, Robert J. Skoumal
Ground-motion simulations for the 2024 Mw 4.8 Tewksbury, New Jersey, earthquake Ground-motion simulations for the 2024 Mw 4.8 Tewksbury, New Jersey, earthquake
Ground-motion simulations of notable earthquakes in the central and eastern United States are limited and typically assume one-dimensional (1D) Earth structure. In this study, we use a three-dimensional (3D) seismic velocity model to better constrain the depth and focal mechanism of the April 5th, 2024, moment magnitude 4.8 Tewksbury earthquake and investigate the spatial variability of...
Authors
Oliver S. Boyd, Ebru Bozdağ, Haiyang Liam Kehoe, Morgan P. Moschetti
Magnitude conversion relations create substantial differences in seismic hazard models Magnitude conversion relations create substantial differences in seismic hazard models
Earthquake catalogs are essential data inputs for seismic hazard modeling. Because earthquake magnitudes are reported in a variety of types (e.g., local magnitudes and moment magnitudes), magnitude conversion relationships must be used to convert the different magnitude types present in a catalog to a uniform magnitude type to avoid biases in the hazard computation. However, these...
Authors
Andrea L. Llenos, David R. Shelly, Allison M. Shumway
Rapid characterization of the 2025 Mw 8.8 Kamchatka, Russia earthquake Rapid characterization of the 2025 Mw 8.8 Kamchatka, Russia earthquake
The 29 July 2025 Mw 8.8 Kamchatka, Russia, earthquake was the sixth largest instrumentally recorded earthquake. This event was seismically well observed at regional and teleseismic distances, but publicly available near‐source data were sparse at the time of the event, presenting unique challenges for rapid source and impact characterization. The U.S. Geological Survey (USGS) National...
Authors
Harriet Zoe Yin, Kate E. Allstadt, William D Barnhart, Samantha Ann Clapp, Paul S. Earle, Dara Elyse Goldberg, Alex R. Grant, Matt Herman, Kishor S. Jaiswal, Sara K. McBride, Adam T. Ringler, Max Schneider, Eric M. Thompson, Nicholas van der Elst, David Wald, Dun Wang, Charles Worden, William L. Yeck
Subsurface structure across the Tacoma Basin, Washington State, using trans-dimensional Bayesian inversion of fundamental mode spatial autocorrelation data Subsurface structure across the Tacoma Basin, Washington State, using trans-dimensional Bayesian inversion of fundamental mode spatial autocorrelation data
Spatial autocorrelation (SPAC), the azimuthal average of the normalized cross-correlation between equidistant station pairs deployed in a 2-D array, is widely used to image the subsurface structure. However, the rigorous estimate of subsurface structure and its uncertainties as a function of depth using SPAC data is challenging due to the nonlinear relation between the SPAC data and...
Authors
Surya Pachhai, Kristine L. Pankow, William J. Stephenson
Helping California get ready for when the mud hits the fan Helping California get ready for when the mud hits the fan
With frequent wildfires, powerful rainstorms, steep terrain, and dense population, California is particularly vulnerable to postfire hazards like flooding and debris flow. Major postfire flooding and debris-flow events can be more costly than the fire itself, causing dozens of fatalities and widespread damage (Chawner, 1934; Lancaster et al., 2021). Smaller events occur nearly every year...
Authors
Jason W. Kean, Jaime Kostelnik
Neotectonic origins for the Meadow Bank scarp, Wabash Valley seismic zone USA Neotectonic origins for the Meadow Bank scarp, Wabash Valley seismic zone USA
The Meadow Bank scarp (MBS) in southeastern Illinois is a linear geomorphic expression, ∼10 km long and ∼8 m high above a relatively flat landscape. It parallels an underlying northeast‐oriented Late‐Precambrian–Early‐Cambrian structural fabric, called the Wabash Valley fault zone, and is within an area of modern, historic, and paleo seismicity, called the Wabash Valley seismic zone. In...
Authors
Edward W Woolery, William J. Stephenson, Kevin Woller, Alena L. Leeds, Noah Silas Lindberg, Jackson K. Odum, Cooper Cearley, Ron Counts