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Publications

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Interaction between climate, volcanism, and isostatic rebound in Southeast Alaska during the last deglaciation

Observations of enhanced volcanic frequency during the last deglaciation have led to the hypothesis that ice unloading in glaciated volcanic terrains can promote volcanism through decompression melting in the shallow mantle or a reduction in crustal magma storage time. However, a direct link between regional climate change, isostatic adjustment, and the initiation of volcanism remains to be demons
Authors
Summer Praetorius, Alan Mix, Britta Jensen, Duane Froese, Glenn A. Milne, Matthew Wolhowe, Jason A. Addison, Fred Prahl

Magma decompression rates during explosive eruptions of Kīlauea volcano, Hawaii, recorded by melt embayments

The decompression rate of magma as it ascends during volcanic eruptions is an important but poorly constrained parameter that controls many of the processes that influence eruptive behavior. In this study, we quantify decompression rates for basaltic magmas using volatile diffusion in olivine-hosted melt tubes (embayments) for three contrasting eruptions of Kīlauea volcano, Hawaii. Incomplete exso
Authors
David J. Ferguson, Helge M. Gonnermann, Philipp Ruprecht, Terry Plank, Erik H. Hauri, Bruce F. Houghton, Donald A. Swanson

Results of the eruptive column model inter-comparison study

This study compares and evaluates one-dimensional (1D) and three-dimensional (3D) numerical models of volcanic eruption columns in a set of different inter-comparison exercises. The exercises were designed as a blind test in which a set of common input parameters was given for two reference eruptions, representing a strong and a weak eruption column under different meteorological conditions. Compa
Authors
Antonio Costa, Yujiro Suzuki, M. Cerminara, Ben J. Devenish, T. Esposti Ongaro, Michael Herzog, Alexa R. Van Eaton, L.C. Denby, Marcus Bursik, Mattia de' Michieli Vitturi, S. Engwell, Augusto Neri, Sara Barsotti, Arnau Folch, Giovanni Macedonio, F. Girault, G. Carazzo, S. Tait, E. Kaminski, Larry G. Mastin, Mark J. Woodhouse, Jeremy C. Phillips, Andrew J. Hogg, Wim Degruyter, Costanza Bonadonna

Inter-comparison of three-dimensional models of volcanic plumes

We performed an inter-comparison study of three-dimensional models of volcanic plumes. A set of common volcanological input parameters and meteorological conditions were provided for two kinds of eruptions, representing a weak and a strong eruption column. From the different models, we compared the maximum plume height, neutral buoyancy level (where plume density equals that of the atmosphere), an
Authors
Yujiro Suzuki, Antonio Costa, Matteo Cerminara, Tomaso Esposti Ongaro, Michael Herzog, Alexa R. Van Eaton, Leif Denby

The timing of compositionally-zoned magma reservoirs and mafic 'priming' weeks before the 1912 Novarupta-Katmai rhyolite eruption

The June 6, 1912 eruption of more than 13 km3 of dense rock equivalent (DRE) magma at Novarupta vent, Alaska was the largest of the 20th century. It ejected >7 km3 of rhyolite, ~1.3 km3 of andesite and ~4.6 km3 of dacite. Early ideas about the origin of pyroclastic flows and magmatic differentiation (e.g., compositional zonation of reservoirs) were shaped by this eruption. Despite being well studi
Authors
Brad S. Singer, Fidel Costa, Jason S. Herrin, Wes Hildreth, Judith Fierstein

Geologic history of Martian regolith breccia Northwest Africa 7034: Evidence for hydrothermal activity and lithologic diversity in the Martian crust

The timing and mode of deposition for Martian regolith breccia Northwest Africa (NWA) 7034 were determined by combining petrography, shape analysis, and thermochronology. NWA 7034 is composed of igneous, impact, and brecciated clasts within a thermally annealed submicron matrix of pulverized crustal rocks and devitrified impact/volcanic glass. The brecciated clasts are likely lithified portions of
Authors
Francis M. McCubbin, Jeremy W. Boyce, Timea Novak-Szabo, Alison Santos, Romain Tartese, Nele Muttik, Gabor Domokos, Jorge A. Vazquez, Lindsay P. Keller, Desmond E. Moser, Douglas J. Jerolmack, Charles K. Shearer, Andrew Steele, Stephen M. Elardo, Zia Rahman, Mahesh Anand, Thomas Delhaye, Carl B. Agee

Feasibility study of earthquake early warning (EEW) in Hawaii

The effects of earthquake shaking on the population and infrastructure across the State of Hawaii could be catastrophic, and the high seismic hazard in the region emphasizes the likelihood of such an event. Earthquake early warning (EEW) has the potential to give several seconds of warning before strong shaking starts, and thus reduce loss of life and damage to property. The two approaches to EEW
Authors
Weston A. Thelen, Alicia J. Hotovec-Ellis, Paul Bodin

Radiocarbon constraints imply reduced carbon uptake by soils during the 21st century

Soil is the largest terrestrial carbon reservoir and may influence the sign and magnitude of carbon cycle-climate feedbacks. Many Earth system models (ESMs) estimate a significant soil carbon sink by 2100, yet the underlying carbon dynamics determining this response have not been systematically tested against observations. We used 14C data from 157 globally distributed soil profiles sampled to 1 m
Authors
Yujie He, Susan E. Trumbore, Margaret S. Torn, Jennifer W. Harden, Lydia J.S. Vaughn, Steven D. Allison, J. T. Randerson

Magma transfer at Campi Flegrei caldera (Italy) before the 1538 AD eruption

Calderas are collapse structures related to the emptying of magmatic reservoirs, often associated with large eruptions from long-lived magmatic systems. Understanding how magma is transferred from a magma reservoir to the surface before eruptions is a major challenge. Here we exploit the historical, archaeological and geological record of Campi Flegrei caldera to estimate the surface deformation p
Authors
Mauro A. Di Vito, Valerio Acocella, Giuseppe Aiello, Diana Barra, Maurizio Battaglia, Antonio Carandente, Carlo Del Gaudio, Sandro de Vita, Giovanni P. Ricciardi, Ciro Ricco, Roberto Scandone, Filippo Terrasi

Insights into shallow magmatic processes at Kīlauea Volcano, Hawaiʻi, from a multiyear continuous gravity time series

Continuous gravity data collected near the summit eruptive vent at Kīlauea Volcano, Hawaiʻi, during 2011–2015 show a strong correlation with summit-area surface deformation and the level of the lava lake within the vent over periods of days to weeks, suggesting that changes in gravity reflect variations in volcanic activity. Joint analysis of gravity and lava level time series data indicates that
Authors
Michael P. Poland, Daniele Carbone

Seismo-acoustic evidence for an avalanche driven phreatic eruption through a beheaded hydrothermal system: An example from the 2012 Tongariro eruption

The 6 August 2012 Te Maari eruption comprises a complex eruption sequence including multiple eruption pulses, a debris avalanche that propagated ~ 2 km from the vent, and the formation of a 500 m long, arcuate chasm, located ~ 300 m from the main eruption vent. The eruption included 6 distinct impulses that were coherent across a local infrasound network marking the eruption onset at 11:52:18 (al
Authors
A.D. Jolly, P. Jousset, J.J. Lyons, R. Carniel, R. Fournier, B. Fry, C. Miller

The role of crystallization-driven exsolution on the sulfur mass balance in volcanic arc magmas

The release of large amounts of sulfur to the stratosphere during explosive eruptions affects the radiative balance in the atmosphere and consequentially impacts climate for up to several years after the event. Quantitative estimations of the processes that control the mass balance of sulfur between melt, crystals, and vapor bubbles is needed to better understand the potential sulfur yield of indi
Authors
Yanqing Su, Christian Huber, Olivier Bachmann, Zoltán Zajacz, Heather M. Wright, Jorge A. Vazquez