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A. Gartman, Findlay, A. J., and Luther, G. W., Nanoparticulate pyrite and other nanoparticles are a widespread component of hydrothermal vent black smoker emissions, Chemical Geology, vol. 366, pp. 32–41, 2014.
A. Gartman, Yucel, M., Madison, A. S., Chu, D. W., Ma, S., Janzen, C. P., Becker, E. L., Beinart, R. A., Girguis, P. R., and Luther, G. W., Sulfide Oxidation across Diffuse Flow Zones of Hydrothermal Vents, Aquatic Geochemistry, vol. 17, pp. 583–601, 2011.
W. B. Garry, Gregg, T. K. P., Soule, S. A., and Fornari, D. J., Formation of submarine lava channel textures: Insights from laboratory simulations, Journal of Geophysical Research, vol. 111, p. B03104, 2006.
W. D. Gardner, Fluxes, dynamics and chemistry of particulates in the ocean, Massachusetts Institute of Technology and the Woods Hole Oceanographic Institution, Cambridge, MA and Woods Hole, MA, 1977.
A. Gardebrecht, Markert, S., Sievert, S. M., Felbeck, H., Thuermer, A., Albrecht, D., Wollherr, A., Kabisch, J., Le Bris, N., Lehmann, R., Daniel, R., Liesegang, H., Hecker, M., and Schweder, T., Physiological homogeneity among the endosymbionts of Riftia pachyptila and Tevnia jerichonana revealed by proteogenomics, ISME JOURNAL, vol. 6, pp. 766–776, 2012.
O. Garcia-Pineda, MacDonald, I. R., Zimmer, B., Shedd, B., and Roberts, H., Remote-sensing evaluation of geophysical anomaly sites in the outer continental slope, northern Gulf of Mexico, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 57, pp. 1859–1869, 2010.
O. Garcia-Pineda, MacDonald, I., Silva, M., Shedd, W., S Asl, D., and Schumaker, B., Transience and persistence of natural hydrocarbon seepage in Mississippi Canyon, Gulf of Mexico, Deep Sea Research Part II: Topical Studies in Oceanography, vol. 129, pp. 119–129, 2016.
M. O. Garcia, Ito, G., Weis, D., Geist, D. J., Swinnard, L., Bianco, T., Flinders, A., Taylor, B., Appelgate, B., Blay, C., Hanano, D., Silva, I. N., Naumann, T., Maerschalk, C., Harpp, K. S., Christensen, B., Sciaroni, L., Tagami, T., and Yamasaki, S., Widespread secondary volcanism near northern Hawaiian Islands, EOS, Transactions, American Geophysical Union, vol. 89, pp. 542–543, 2008.
M. O. Garcia, Weis, D., Jicha, B. R., Ito, G., and Hanano, D., Petrology and geochronology of lavas from Ka‘ula Volcano: Implications for rejuvenated volcanism of the Hawaiian mantle plume, Geochimica et Cosmochimica Acta, vol. 185, pp. 278–301, 2016.
M. O. Garcia, Jorgenson, B. A., Mahoney, J. J., Ito, E., and Irving, A. J., An evaluation of temporal geochemical evolution of Loihi summit lavas: results from Alvin submersible dives, Journal of Geophysical Research, vol. 98, pp. 537–550, 1993.
M. O. Garcia and Davis, M. G., Submarine growth and internal structure of ocean island volcanoes based on submarine observations of Mauna Loa Volcano, Hawaii, Geology, vol. 29, pp. 163–166, 2001.
D. Gao, Hurst, S. D., Karson, J. A., Delaney, J. R., and Speiss, F. N., Computer-aided interpretation of side-looking sonar images from the eastern intersection of the Mid- Atlantic Ridge with the Kane Transform, Journal of Geophysical Research, vol. 103, pp. 14,20,921–997, 1998.
A. Gannoun, Burton, K. W., Parkinson, I. J., Alard, O., Schiano, P., and Thomas, L. E., The scale and origin of the osmium isotope variations in mid-ocean ridge basalts, Earth and Planetary Science Letters, vol. 259, pp. 541–556, 2007.
R. Gannon, Underwater canyons, Popular Science, vol. 231, p. 60(7), 1987.
D. G. Gallo, The structural character of oceanic transforms: Implications for tectonic processes, University of Rhode Island, Kingston, R.I., 1993.
R. M. Gallant and Von Damm, K. L., Geochemical controls on hydrothermal fluids from the Kairei and Edmond Vent Fields, 23 degrees-25 degrees S, Central Indian Ridge, Geochemistry, Geophysics, Geosystems, vol. 7, p. Q06018, 2006.
S. M. Gallager, Yamazaki, H., and Davis, C. S., Contribution of fine-scale vertical structure and swimming behavior to formation of plankton layers on Georges Bank, Marine Ecology Progress Series, vol. 267, pp. 27–43, 2004.
S. V. Galkin, Megafauna associated with hydrothermal vents in the Manus Back-Arc Basin (Bismarck Sea), Marine Geology, vol. 142, pp. 197–206, 1997.
S. V. Galkin, Bottom fauna of the Mohns Ridge: submersible investigations, in Bentos morei Rossii i Severnoi Atlantiki: sbornik nauchnykh trudov (Benthos of the Russian Sea and the Northern Atlantic), A. P. Kuznetsov, Ed. Moscow, Russia: Nauka, 2000, pp. 81–85.
F. Galgani, Leaute, J. P., Moguedet, P., Souplet, A., Verin, Y., Carpentier, A., Goraguer, H., Latrouite, D., Andral, B., Cadiou, Y., Mahe, J. C., Poulard, J. C., and Nerisson, P., Litter on the sea floor along European coasts, Marine Pollution Bulletin, vol. 40, pp. 516–527, 2000.
M. P. Galaska, Liu, G., West, D., Erickson, K., Quattrini, A. M., Bracco, A., and Herrera, S., Seascape Genomics Reveals Metapopulation Connectivity Network of Paramuricea biscaya in the Northern Gulf of Mexico, Frontiers in Marine Science, vol. 8, p. 790929, 2021.
M. P. Galaska, Liu, G., West, D., Erickson, K., Quattrini, A., Bracco, A., and Herrera, S., Seascape genomics reveals metapopulation connectivity network of Paramuricea biscaya in the northern Gulf of Mexico, bioRxiv, p. 2021.10.06.463359, 2021.
I. J. Galantin, Vehicles for deep ocean technology, Shipmate, vol. 28, pp. 24–29, 1965.
D. Galambos, Anderson, R. E., Reveillaud, J., and Huber, J. A., Genome-resolved metagenomics and metatranscriptomics reveal niche differentiation in functionally redundant microbial communities at deep-sea hydrothermal vents, Environ Microbiol, 2019.

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