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“The Anatomy of a Buried Submarine Hydrothermal System, Clark Volcano, Kermadec Arc, New Zealand”, ECONOMIC GEOLOGY, vol. 109, pp. 2261–2292, 2014.
, “Activity and phylogenetic diversity of sulfate-reducing microorganisms in low-temperature subsurface fluids within the upper oceanic crust”, FRONTIERS IN MICROBIOLOGY, vol. 5, 2015.
, “Advances in In Situ Alignment Calibration of Doppler and High/Low-end Attitude Sensors for Underwater Vehicle Navigation: Theory and Experimental Evaluation”, JOURNAL OF FIELD ROBOTICS, vol. 32, pp. 655–674, 2015.
, “Arsenic concentrations and species in three hydrothermal vent worms, Ridgeia piscesae, Paralvinella sulficola and Paralvinella palmiformis”, Deep Sea Research Part I: Oceanographic Research Papers, vol. 116, pp. 41–48, 2016.
, “Assessing microbial processes in deep-sea hydrothermal systems by incubation at in situ temperature and pressure”, Deep Sea Research Part I: Oceanographic Research Papers, vol. 115, pp. 221–232, 2016.
, “Abiotic synthesis of graphite in hydrothermal vents”, Nature Communications, vol. 10, 2019.
, “Application of B, Mg, Li, and Sr Isotopes in Acid-Sulfate Vent Fluids and Volcanic Rocks as Tracers for Fluid-Rock Interaction in Back-Arc Hydrothermal Systems”, Geochemistry Geophysics Geosystems, 2019.
, “APT: An Instrument for Monitoring Seafloor Acceleration, Pressure, and Temperature with Large Dynamic Range and Bandwidth”, Bulletin of the Seismological Society of America, vol. 109, pp. 448-462, 2019.
, “Abiotic redox reactions in hydrothermal mixing zones: Decreased energy availability for the subsurface biosphere”, Proceedings of the National Academy of Sciences of the United States of America, p. 202003108, 2020.
, “Aerobic and anaerobic iron oxidizers together drive denitrification and carbon cycling at marine iron-rich hydrothermal vents”, Isme Journal, 2020.
, “Allopatric and sympatric drivers of speciation in Alviniconcha hydrothermal vent snails”, Molecular Biology and Evolution, p. msaa177, 2020.
, “Allopatric and Sympatric Drivers of Speciation in Alviniconcha Hydrothermal Vent Snails”, Molecular Biology and Evolution, vol. 37, pp. 3469-3484, 2020.
, “Abyssal deposit feeders are secondary consumers of detritus and rely on nutrition derived from microbial communities in their guts”, Scientific Reports, vol. 11, 2021.
, “Activities of 223Ra and 226Ra in fluids from the Lost City Hydrothermal Field require short fluid residence times”, Journal of Geophysical Research - Oceans, 2021.
, “Activities of Ra-223 and Ra-226 in Fluids From the Lost City Hydrothermal Field Require Short Fluid Residence Times”, Journal of Geophysical Research-Oceans, vol. 126, 2021.
, “Archaeal lipid diversity, alteration, preservation at Cathedral Hill, Guaymas Basin, Gulf of California, and its link to the deep time preservation paradox”, Organic Geochemistry, p. 104302, 2021.
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