Publications
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Velocity-independent dry friction on mica: A realization of ideal Amontons-Coulomb friction Velocity-independent dry friction on mica: A realization of ideal Amontons-Coulomb friction
The Amontons-Coulomb friction law assumes that the frictional force between materials is independent of sliding velocity. However, as Coulomb noted, this is a rough approximation, and a second-order dependence of friction on the logarithm of sliding velocity is incorporated in a commonly used ‘rate- and state-dependent’ friction representation. Here we conduct shear experiments on mica...
Authors
Hiroshi Sakuma, Diane E. Moore, David A. Lockner, Toshihiro Kogure
Site-specific amplifications in Northwestern Turkiye: A generic approach Site-specific amplifications in Northwestern Turkiye: A generic approach
In this study, we derive generic site amplification functions applicable to Northwestern Türkiye and follow guidance on site classifications established by the United States National Earthquake Hazards Reduction Program (NEHRP). We employ the one-dimensional (1-D) equivalent linear ground response analysis method and focus on recordings from a select suite of free-field strong motion (SM...
Authors
Gamze Muratoglu, Aysegul Askan, Alan Yong
The digital archivist: Automating legacy macroseismic data processing using large language models The digital archivist: Automating legacy macroseismic data processing using large language models
Macroseismic data are a key resource to investigate shaking and damage from preinstrumental and early instrumental eras. However, data are often stored as inconsistently formatted reports describing observed shaking and damage, making manually parsing and interpreting accounts labor‐intensive. We introduce a novel workflow using Google’s Gemini 2.5 Pro large language model (LLM) to...
Authors
Aarnav Agrawal, Susan E. Hough, Mostafa Mousavi, Margaret Hellweg, William Ellsworth, Clara Yoon, Salvador Blanco
Cascadia Subduction Zone science: Call for the next generation community seismic velocity model Cascadia Subduction Zone science: Call for the next generation community seismic velocity model
The Cascadia subduction zone (CSZ) hosts major seismic and tsunami hazards, yet key questions persist about the relationship between margin structure, fluid distribution, episodic tremor and slip, shallow megathrust behavior, shaking and tsunamigenesis, and the resulting hazard estimates. Addressing these problems requires an empirically grounded, three‐dimensional seismic velocity model...
Authors
Valerie J. Sahakian, Asif Ashraf, Charity Mann, Pieter-Ewald Share-MacParland, Rasheed Ajala, Jonathan Delph, Bin He, Emilie Hooft, Alex R. Grant, William J. Stephenson, Erin A. Wirth, Amanda Thomas, Diego Melgar, Jill Elizabeth
A ground-motion model derived using a generalized mean rupture distance for large slab interface earthquakes A ground-motion model derived using a generalized mean rupture distance for large slab interface earthquakes
Source–station distance is a central input to ground‐motion models (GMMs) for predicting seismic shaking. GMM development uses distance metrics including the Joyner–Boore distance, which is the shortest distance from an observation point to the surface projection of the earthquake rupture, and Rrup the shortest distance to the rupture in three dimensions. Thompson and Baltay (2018)...
Authors
Jessica R. Murray, Grace Alexandra Parker
Preliminary geology of the North Meadow Creek Area, Tobacco Root Mountains, southwest Montana: The North Meadow Creek Fault Preliminary geology of the North Meadow Creek Area, Tobacco Root Mountains, southwest Montana: The North Meadow Creek Fault
This report documents a previously unmapped fault, informally referred to herein as the North Meadow Creek fault, on the east flank of the Tobacco Mountains of southwestern Montana. This fault has an apparently long and complex history, including Quaternary offset of an older alluvial terrace, offset of a debris flow of presumed Pleistocene age, offset of rhyolite lava flows of presumed...
Authors
Gary S. Fuis, Parker J. LeClair, Chester A. Ruleman
Rapid earthquake magnitude classification via P-wave strains from borehole strainmeters and Distributed Acoustic Sensing Rapid earthquake magnitude classification via P-wave strains from borehole strainmeters and Distributed Acoustic Sensing
Distributed Acoustic Sensing (DAS) offers a promising approach for earthquake early warning (EEW) in settings where seismic networks are costly to maintain. By repurposing fiber-optic cables as dense strainmeter arrays, DAS enables real-time earthquake detection wherever those fibers are accessible. However, poor azimuthal coverage and challenges in estimating magnitude from strain...
Authors
Theresa Marie Sawi, Jeffrey J. McGuire, Andrew J. Barbour, Clara Yoon, Martin Karrenbach, Connie Stewart
Cajon Pass and the southern San Andreas Fault System: Earthquake cycle stress accumulation and present-day loading Cajon Pass and the southern San Andreas Fault System: Earthquake cycle stress accumulation and present-day loading
With over a century since the last major rupture affecting the wider Los Angeles region, tectonic stress has steadily built along the southern San Andreas and San Jacinto fault systems, raising concerns of an imminent large earthquake. Cajon Pass, located at the junction of these faults, represents a critical site for potential through-going ruptures in Southern California. We...
Authors
Liliane Burkhard, Bridget Smith-Konter, Katherine M. Scharer, David Sandwell
Moment magnitude for small earthquakes in the Delaware basin of west Texas and southeast New Mexico, USA Moment magnitude for small earthquakes in the Delaware basin of west Texas and southeast New Mexico, USA
The Delaware Basin region of west Texas and southeast New Mexico has become one of the most prolific regions of seismic activity in the continental United States due to widespread hydraulic fracturing and wastewater disposal injection. In response to the increased number of earthquakes in this region, rapid and accurate characterization of earthquake sources is necessary to understand...
Authors
Sydney Gable, Yihe Huang, David R. Shelly, Justin L. Rubinstein
Dynamic coupling between faulting, rifting and magmatism during 2021-2025 unrest on Reykjanes Peninsula, Iceland Dynamic coupling between faulting, rifting and magmatism during 2021-2025 unrest on Reykjanes Peninsula, Iceland
Interactions among faulting, earthquakes, and eruptions are fundamental to plate tectonics and hazard forecasting yet rarely observed along mid-ocean ridges. On Iceland's Reykjanes Peninsula, seismotectonic–volcanic unrest resumed after nearly 800-year hiatus, providing an opportunity to observe these interactions during 2021–2025 activity. By integrating high-resolution seismicity...
Authors
Tomáš J. Fischer, Pavla Hrubcová, Josef Vlček, Gregory de Pascale, Thorvaldur Thordarson, Halldór Geirsson, Anthony Lomax, Robert J. Skoumal
Predictable seismic cycles result from structural rupture barriers on oceanic transform faults Predictable seismic cycles result from structural rupture barriers on oceanic transform faults
Earthquakes of magnitude (M) >5.5 on oceanic transform faults (OTFs) repeatedly rupture the same locked patches, sometimes quasiperiodically. These patches are separated by “barriers” that halt earthquake propagation and slip mostly aseismically. However, the physical processes governing this systematic behavior remain unclear. We analyzed two barriers along the Gofar transform fault...
Authors
Jianhua Gong, Wenyuan Fan, Jeffrey J. McGuire, Mark D. Behn, Jessica M. Warren, Emily Roland, M. S. Boettcher, J. A. Collins, Y. Liu, C. R. German
Discrete element investigation of the influence of shallow soil density on the manifestations of strike-slip surface fault rupture Discrete element investigation of the influence of shallow soil density on the manifestations of strike-slip surface fault rupture
This study investigates the influence of soil relative density on strike-slip surface fault rupture manifestations using three-dimensional numerical simulations performed with the discrete element method (DEM). The simulations capture the formation of distinctive fault strands within complex flower structures using tens of millions of grains. The tendency for dense soils to localize...
Authors
Fernando E. Garcia, Curtis William Baden, Johanna Nevitt