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E. L. Podowski, Ma, S., Luther, G. W., Wardrop, D., and Fisher, C. R., Biotic and abiotic factors affecting distributions of megafauna in diffuse flow on andesite and basalt along the Eastern Lau Spreading Center, Tonga, Marine Ecology Progress Series, vol. 418, pp. 25–45, 2010.
M. Podar, Mullineaux, L. S., Huang, H. - R., Perlman, P. S., and Sogin, M. L., Bacterial group II introns in a deep sea hydrothermal vent environment., Applied and Environmental Microbiology, vol. 68, pp. 6392–6398, 2002.
C. Plum, Gollner, S., Martinez-Arbizu, P., and Bright, M., Diversity and composition of the copepod communities associated with megafauna around a cold seep in the Gulf of Mexico with remarks on species biogeography, MARINE BIODIVERSITY, vol. 45, pp. 419–432, 2015.
S. Plouviez, Shank, T. M., Faure, B., Daguin-Thiebaut, C., Viard, F., Lallier, F. H., and Jollivet, D., Comparative phylogeography among hydrothermal vent species along the East Pacific Rise reveals vicariant processes and population expansion in the South, Molecular Ecology, vol. 18, pp. 3903–3917, 2009.
S. Plouviez, Jacobson, A., Wu, M., and Van Dover, C. L., Characterization of vent fauna at the Mid-Cayman Spreading Center, DEEP-SEA RESEARCH PART I-OCEANOGRAPHIC RESEARCH PAPERS, vol. 97, pp. 124–133, 2015.
Y. Pley, Schipka, J., Gambacorta, A., Jannasch, H. W., Fricke, H. R., and Stetter, K. O., Pyrodictium abyssi sp. nov. represents a novel heterotrophic marine archaeal hyperthermophile growing at 110 degrees C., Systematic and Applied Microbiology, vol. 14, pp. 245–253, 1991.
P. Pjevac, Jr., A. Kamyshny, Dyksma, S., and Mussmann, M., Microbial consumption of zero-valence sulfur in marine benthic habitats, ENVIRONMENTAL MICROBIOLOGY, vol. 16, pp. 3416–3430, 2014.
O. Pizarro and Singh, H., Toward large-area mosaicing for underwater scientific applications, IEEE Journal of Oceanic Engineering, vol. 28, pp. 651–672, 2003.
D. J. W. Piper, Shaw, J., and Skene, K. I., Stratigraphic and sedimentological evidence for late Wisconsinan sub-glacial outburst floods to Laurentian Fan, Palaeogeography, Palaeoclimatology, Palaeoecology, vol. 246, pp. 101–119, 2007.
A. J. Pietruszka, Keyes, M. J., Duncan, J. A., Hauri, E. H., Carlson, R. W., and Garcia, M. O., Excesses of seawater-derived 234U in volcanic glasses from Loihi Seamount due to crustal contamination, Earth and Planetary Science Letters, vol. 304, pp. 280–289, 2011.
C. F. Phleger, Nelson, M. M., Groce, A. K., Cary, S. C., Coyne, K. J., Gibson, J. A. E., and Nichols, P. D., Lipid biomarkers of deep-sea hydrothermal vent polychaetes - Alvinella pompejana, A-caudata, Paralvinella grasslei and Hesiolyra bergii, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 52, pp. 2333–2352, 2005.
C. F. Phleger, Nelson, M. M., Groce, A. K., Cary, S. C., Coyne, K. J., and Nichols, P. D., Lipid composition of deep-sea hydrothermal vent tubeworm Riftia packyptila, crabs Munidopsis subsquatnosa and Bythograea thermydron, mussels Bathymodiolus sp and limpets Lepetodrilus spp, Comparative Biochemistry and Physiology B-Biochemistry {&} Molecular Biology, vol. 141, pp. 196–210, 2005.
M. J. Phipps and Kleinrock, M. C., Transform zone migration: implications of bookshelf faulting for oceanic and Icelandic propagating rifts, Tectonics, vol. 10, pp. 920–935, 1991.
J. A. Philpotts, Aruscavage, P. J., and Von Damm, K. L., Uniformity and diversity in the composition of mineralizing fluids from hydrothermal vents on the southern Juan de Fuca Ridge, Journal of Geophysical Research, vol. 92, pp. 11,311–327,333, 1987.
J. D. Phillips, Pearl, K. R., and Marquet, W. M., An integrated approach to seafloor geologic mapping on the Mid-Atlantic Ridge - Angus, Alvin and Sonarray, in Oceans '76: Second Annual Combined Conference, September 13-15, 1976, Sheraton Park Hotel, Washington, D.C., New York, N.Y.: IEEE, 1976, pp. 8C1–8C8.
J. D. Phillips, Driscoll, A. H., Peal, K. R., Marquet, W. M., and Owen, D. M., A new undersea geological survey tool: Angus, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 26, pp. 211–225, 1979.
B. Pflugfelder, Fisher, C. R., and Bright, M., The color of the trophosome: elemental sulfur distribution in the endosymbionts of Riftia pachyptila (Vestimentifera; Siboglinidae), Marine Biology, vol. 146, pp. 895–901, 2005.
M. H. Pettibone, Two new species of Harmothoinae (Polychaeta: Polynoidae) from the East Pacific Rise, collected by Alvin dives 2000 and 2003, Proceedings of the Biological Society of Washington, vol. 102, pp. 305–310, 1989.
M. H. Pettibone, New genera and species of deep-sea Macellicephalinae and Harmothoinae (Polychaeta: Polynoidae) from the hydrothermal rift areas off the Galapagos and western Mexico at 21 degrees N and from the Santa Catalina Channel, in Hydrothermal vents of the Eastern Pacific: An overview, M. L. Jones, Ed. Vienna, Va.: INFAX, 1985, pp. 740–757.
R. A. Petitt, Harris, D. W., Wooding, B., Bailey, J., Jolly, J., Hobart, E., Chave, A. D., Duennebier, F. K., Butler, R., Bowen, A., and Yoerger, D. R., The Hawaii-2 Observatory, IEEE Journal of Oceanic Engineering, vol. 27, pp. 245–253, 2002.
R. N. Peterson, Viso, R. F., MacDonald, I. R., and Joye, S. B., On the utility of radium isotopes as tracers of hydrocarbon discharge, Marine Chemistry, vol. 156, pp. 98–107, 2013.
S. Petersen, Kuhn, K., Kuhn, T., Augustin, N., Hekinian, R., Franz, L., and Borowski, C., The geological setting of the ultramafic-hosted Logatchev hydrothermal field (14 degrees 45′N, Mid-Atlantic Ridge) and its influence on massive sulfide formation, Lithos, vol. 112, pp. 40–56, 2009.
J. M. Peter, Genesis of hydrothermal vent deposits in the southern trough of Guaymas Basin, Gulf of California: a mineralogical and geochemical study, University of Toronto, Toronto, Ont., Canada, 1986.
J. M. Peter, Simoneit, B. R. T., Kawka, O. E., and Scott, S. D., Liquid hydrocarbon-bearing inclusions in modern hydrothermal chimmeys and mounds from the southern trough of Guaymas Basin, Gulf of California, Applied Geochemistry, vol. 5, pp. 51–63, 1990.
N. J. Pester, Rough, M., Ding, K., and Seyfried, W. E., A new Fe/Mn geothermometer for hydrothermal systems: Implications for high-salinity fluids at 13°N on the East Pacific Rise, Geochimica et Cosmochimica Acta, vol. 75, pp. 7881–7892, 2011.

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