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P. A. Brandl, Beier, C., Regelous, M., Abouchami, W., Haase, K. M., Garbe-Schonberg, D., and Galer, S. J. G., Volcanism on the flanks of the East Pacific Rise: Quantitative constraints on mantle heterogeneity and melting processes, Chemical Geology, vol. 298–299, pp. 41–56, 2012.
S. L. Ross and Zierenberg, R. A., Volcanic geomorphology of the SESCA and NESCA sites, Escanaba Trough, in Geologic, hydrothermal, and biologic studies at Escanaba Trough, Gorda Ridge, offshore Northern California, J. L. Morton, Ed. Reston, Va.: U.S. Geological Survey, 1994, pp. 143–151.
J. Sinton, Bergmanis, E., Rubin, K. H., Batiza, R., Gregg, T. K. P., Gronvold, K., Macdonald, K. C., and White, S. M., Volcanic eruptions on mid-ocean ridges: New evidence from the superfast spreading East Pacific Rise, 17 degrees-19 degrees S, Journal of Geophysical Research, vol. 107, p. Article no. 2115, 2002.
K. H. Rubin, Soule, S. A., Chadwick, W. W., Fornari, D. J., Clague, D. A., Embley, R. W., Baker, E. T., Perfit, M. R., Caress, D. W., and Dziak, R. P., Volcanic Eruptions in the Deep Sea, Oceanography, vol. 25, pp. 142–157, 2012.
V. D. Wanless, Perfit, M. R., Ridley, W. I., Wallace, P. J., Grimes, C. B., and Klein, E. M., Volatile abundances and oxygen isotopes in basaltic to dacitic lavas on mid-ocean ridges: The role of assimilation at spreading centers, Chemical Geology, vol. 287, pp. 54–65, 2011.
V. Z. Radice, Quattrini, A. M., Wareham, V. E., Edinger, E. N., and Cordes, E. E., Vertical water mass structure in the North Atlantic influences the bathymetric distribution of species in the deep-sea coral genus Paramuricea, Deep Sea Research Part I: Oceanographic Research Papers, vol. 116, pp. 253–263, 2016.
A. J. Reed, Lutz, R. A., and Vetriani, C., Vertical distribution and diversity of bacteria and archaea in sulfide and methane-rich cold seep sediments located at the base of the Florida Escarpment, Extremophiles, vol. 10, pp. 199–211, 2006.
C. Rathgeber, Lince, M. T., Alric, J., Lang, A. S., Humphrey, E., Blankenship, R. E., Vermeglio, A., Plumley, F. G., Van Dover, C. L., Beatty, J. T., and Yurkov, V., Vertical distribution and characterization of aerobic phototrophic bacteria at the Juan de Fuca Ridge in the Pacific Ocean, Photosynthesis Research, vol. 97, pp. 235–244, 2008.
W. E. Seyfried, Pester, N. J., Ding, K., and Rough, M., Vent fluid chemistry of the Rainbow Hydrothermal System (36 degrees N, MAR): Phase equilibria and in-situ pH controls on subseafloor alteration processes, Geochimica et Cosmochimica Acta, vol. 75, pp. 1574–1593, 2011.
S. N. White, Chave, A. D., Reynolds, G. T., Gaidos, E. J., Tyson, J. A., and Van Dover, C. L., Variations in ambient light emission from black smokers and flange pools on the Juan de Fuca Ridge., Geophysical Research Letters, vol. 27, pp. 1151–1154, 2000.
V. L. Ferrini, Tivey, M. K., Carbotte, S. M., Martinez, F., and Roman, C., Variable morphologic expression of volcanic, tectonic, and hydrothermal processes at six hydrothermal vent fields in the Lau back-arc basin, Geochemistry, Geophysics, Geosystems, vol. 9, p. Q07022, 2008.
P. Fryer, Gharib, J., Ross, K., Savov, I., and Mottl, M. J., Variability in serpentinite mudflow mechanisms and sources: ODP drilling results on Mariana forearc seamounts, Geochemistry, Geophysics, Geosystems, vol. 7, p. Q08014, 2006.
U
T. K. P. Gregg, Fornari, D. J., Perfit, M. R., Ridley, W. I., and Kurz, M. D., Using submarine lava pillars to record mid-ocean ridge eruption dynamics, Earth and Planetary Science Letters, vol. 178, pp. 195–214, 2000.
W. O. Rainnie, The use of the deep submersible Alvin in oceanography, in Selected papers from the Governor's Conference on Oceanography, October 11 and 12, 1967 at the Rockefeller University, New York, N.Y., S. Freedgood, Ed. New York, N.Y.: New York State Science and Technology Foundation, 1967, pp. 128–143.
D. J. Byrne, Broadley, M. W., Halldorsson, S. A., Ranta, E., Ricci, A., Tyne, R. L., Stefansson, A., Ballentine, C. J., and Barry, P. H., The use of noble gas isotopes to trace subsurface boiling temperatures in Icelandic geothermal systems, EARTH AND PLANETARY SCIENCE LETTERS, vol. 560, 2021.
D. J. Byrne, Broadley, M. W., Halldorsson, S. A., Ranta, E., Ricci, A., Tyne, R. L., Stefansson, A., Ballentine, C. J., and Barry, P. H., The use of noble gas isotopes to trace subsurface boiling temperatures in Icelandic geothermal systems, EARTH AND PLANETARY SCIENCE LETTERS, vol. 560, 2021.
D. Desbruyeres, Gaill, F., Laubier, L., Prieur, D., and Rau, G. H., Unusual nutrition of the Pompeii worm Alvinella pompejana (polychaetous annelid) from a hydrothermal vent environment: SEM, TEM, 13C and 15N evidence, Marine Biology, vol. 75, pp. 201–205, 1983.
P. A. Tyler, German, C. R., Ramirez-Llodra, E., and Van Dover, C. L., Understanding the biogeography of chemosynthetic ecosystems., Oceanologica Acta, vol. 25, pp. 227–241, 2003.
T. Baumberger, Lilley, M. D., Resing, J. A., Lupton, J. E., Baker, E. T., Butterfield, D. A., Olson, E. J., and Fruh-Green, G. L., Understanding a submarine eruption through time series hydrothermal plume sampling of dissolved and particulate constituents: West Mata, 2008-2012, Geochemistry, Geophysics, Geosystems, vol. 15, pp. 4631–4650, 2014.
L. J. Rosenblum, Stewart, W. K., and Kamgar-Parsi, B., Undersea visualization: a tool for scientific and engineering progress, in Animation and Scientific Visualization: Tools {&} Applications, R. A. Earnshaw, Ed. London: Academic Press, 1993, pp. 205–223.
A. - L. Reysenbach, Liu, Y. T., Banta, A. B., Beveridge, T. J., Kirshtein, J. D., Schouten, S., Tivey, M. K., Von Damm, K. L., and Voytek, M. A., A ubiquitous thermoacidophilic archaeon from deep-sea hydrothermal vents, Nature, vol. 442, pp. 444–447, 2006.

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