Publications
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Probing reservoir-triggered earthquakes in Koyna, India, through scientific deep drilling Probing reservoir-triggered earthquakes in Koyna, India, through scientific deep drilling
We report here the salient features of the recently concluded International Continental Scientific Drilling Program (ICDP) workshop in Koyna, India. This workshop was a sequel to the earlier held ICDP workshop in Hyderabad and Koyna in 2011. A total of 49 experts (37 from India and 12 from 8 other countries) spent 3 days reviewing the work carried out during the last 3 years based on the
Authors
H. Gupta, Shailesh Nayak, William L. Ellsworth, Y. J. B. Rao, S. Rajan, B.K. Bansal, N. Purnachandra Rao, S. Roy, K. Arora, R. Mohan, V. M. Tiwari, H. V. S. Satyanarayana, P. K. Patro, D. Shashidhar, K. Mallika
The case for a modern multiwavelength, polarization-sensitive LIDAR in orbit around Mars The case for a modern multiwavelength, polarization-sensitive LIDAR in orbit around Mars
We present the scientific case to build a multiple-wavelength, active, near-infrared (NIR) instrument to measure the reflected intensity and polarization characteristics of backscattered radiation from planetary surfaces and atmospheres. We focus on the ability of such an instrument to enhance, perhaps revolutionize, our understanding of climate, volatiles and astrobiological potential...
Authors
Adrian J. Brown, Timothy I. Michaels, Shane Byrne, Wenbo Sun, Timothy N. Titus, Anthony Colaprete, Michael J. Wolff, Gorden Videen, Christian J. Grund
Magnetic storms and induction hazards Magnetic storms and induction hazards
Magnetic storms are potentially hazardous to the activities and technological infrastructure of modern civilization. This reality was dramatically demonstrated during the great magnetic storm of March 1989, when surface geoelectric fields, produced by the interaction of the time-varying geomagnetic field with the Earth's electrically conducting interior, coupled onto the overlying Hydro...
Authors
Jeffrey J. Love, E. Joshua Rigler, Antti Pulkkinen, Christopher Balch
Component geochronology in the polyphase ca. 3920 Ma Acasta Gneiss Component geochronology in the polyphase ca. 3920 Ma Acasta Gneiss
The oldest compiled U–Pb zircon ages for the Acasta Gneiss Complex in the Northwest Territories of Canada span about 4050–3850 Ma; yet older ca. 4200 Ma xenocrystic U–Pb zircon ages have also been reported for this terrane. The AGC expresses at least 25 km2 of outcrop exposure, but only a small subset of this has been documented in the detail required to investigate a complex history and...
Authors
Stephen J. Mojzsis, Nicole L. Cates, Guillaume Caro, Dustin Trail, Oleg Abramov, Martin Guitreau, Janne Blichert-Toft, Michelle D. Hopkins, Wouter Bleeker
The dynamics of Hawaiian-style eruptions: A century of study The dynamics of Hawaiian-style eruptions: A century of study
This chapter, prepared in celebration of the Hawaiian Volcano Observatoryʼs centennial, provides a historical lens through which to view modern paradigms of Hawaiian-style eruption dynamics. The models presented here draw heavily from observations, monitoring, and experiments conducted on Kīlauea Volcano, which, as the site of frequent and accessible eruptions, has attracted scientists...
Authors
Margaret T. Mangan, Katharine V. Cashman, Donald A. Swanson
Mammoth Mountain and its mafic periphery—A late Quaternary volcanic field in eastern California Mammoth Mountain and its mafic periphery—A late Quaternary volcanic field in eastern California
The trachydacite complex of Mammoth Mountain and an array of contemporaneous mafic volcanoes in its periphery together form a discrete late Pleistocene magmatic system that is thermally and compositionally independent of the adjacent subalkaline Long Valley system (California, USA). The Mammoth system first erupted ca. 230 ka, last erupted ca. 8 ka, and remains restless and potentially...
Authors
Wes Hildreth, Judith Fierstein, Duane E. Champion, Andrew T. Calvert
A method and example of seismically imaging near‐surface fault zones in geologically complex areas using Vp, Vs, and their ratios A method and example of seismically imaging near‐surface fault zones in geologically complex areas using Vp, Vs, and their ratios
The determination of near‐surface (vadose zone and slightly below) fault locations and geometries is important because assessment of ground rupture, strong shaking, geologic slip rates, and rupture histories occurs at shallow depths. However, seismic imaging of fault zones at shallow depths can be difficult due to near‐surface complexities, such as weathering, groundwater saturation...
Authors
Rufus D. Catchings, Michael J. Rymer, Mark R. Goldman, Robert R. Sickler, Coyn J. Criley
Seismometer Self-Noise and Measuring Methods Seismometer Self-Noise and Measuring Methods
Seismometer self-noise is usually not considered when selecting and using seismic waveform data in scientific research as it is typically assumed that the self-noise is negligibly small compared to seismic signals. However, instrumental noise is part of the noise in any seismic record, and in particular, at frequencies below a few mHz, the instrumental noise has a frequency-dependent...
Authors
Adam T. Ringler, R. Sleeman, Charles R. Hutt, Lind S. Gee
ARkStorm@Tahoe: Stakeholder perspectives on vulnerabilities and preparedness for an extreme storm event in the greater Lake Tahoe, Reno, and Carson City region ARkStorm@Tahoe: Stakeholder perspectives on vulnerabilities and preparedness for an extreme storm event in the greater Lake Tahoe, Reno, and Carson City region
Atmospheric rivers (ARs) are strongly linked to extreme winter precipitation events in the Western U.S., accounting for 80 percent of extreme floods in the Sierra Nevada and surrounding lowlands. In 2010, the U.S. Geological Survey developed the ARkStorm extreme storm scenario for California to quantify risks from extreme winter storms and to allow stakeholders to better explore and...
Authors
Christine M. Albano, Dale A. Cox, Michael D. Dettinger, Kevin Shaller, Toby L. Welborn, Maureen McCarthy
Relation of landslides triggered by the Kiholo Bay earthquake to modeled ground motion Relation of landslides triggered by the Kiholo Bay earthquake to modeled ground motion
The 2006 Kiholo Bay, Hawaii, earthquake triggered high concentrations of rock falls and slides in the steep canyons of the Kohala Mountains along the north coast of Hawaii. Within these mountains and canyons a complex distribution of landslides was triggered by the earthquake shaking. In parts of the area, landslides were preferentially located on east‐facing slopes, whereas in other...
Authors
Edwin L. Harp, Stephen H. Hartzell, Randall W. Jibson, L. Ramirez-Guzman, Robert G. Schmitt
Widespread loess-like deposit in the Martian northern lowlands identifies Middle Amazonian climate change Widespread loess-like deposit in the Martian northern lowlands identifies Middle Amazonian climate change
Consistently mappable units critical to distinguishing the style and interplay of geologic processes through time are sparse in the Martian lowlands. This study identifies a previously unmapped Middle Amazonian (ca. 1 Ga) unit (Middle Amazonian lowland unit, mAl) that postdates the Late Hesperian and Early Amazonian lowland plains by >2 b.y. The unit is regionally defined by subtle...
Authors
James A. Skinner, Kenneth L. Tanaka, Thomas Platz
The 17 May 2012 M4.8 earthquake near Timpson, East Texas: An event possibly triggered by fluid injection The 17 May 2012 M4.8 earthquake near Timpson, East Texas: An event possibly triggered by fluid injection
This study summarizes our investigation of the 17 May 2012 MW-RMT4.8 earthquake near Timpson, Texas, the largest earthquake recorded historically in eastern Texas. To identify preshocks and aftershocks of the 17 May event we examined the arrivals recorded at Nacogdoches (NATX) 30 km from the 17 May epicenter, at nearby USArray Transportable Array stations, and at eight temporary stations...
Authors
Cliff Frohlich, William L. Ellsworth, Wesley Brown, Michael Brunt, James Luetgert, Tim G. MacDonald, Steven Walters