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doi:10.2204/iodp.proc.304305.101.2006

References

Agar, S.M., and Lloyd, G.E., 1997. Deformation of Fe-Ti oxides in gabbroic shear zones from the MARK area. In Karson, J.A., Cannat, M., Miller, D.J., and Elthon, D. (Eds.), Proc. ODP, Sci. Results, 153: College Station, TX (Ocean Drilling Program), 123–141.

Aumento, F., Melson, W.G., et al., 1977. Init. Repts. DSDP, 37: Washington (U.S. Govt. Printing Office).

Blackman, D.K., Cann, J.R., Janssen, B., and Smith, D.K., 1998. Origin of extensional core complexes: evidence from the MAR at Atlantis fracture zone. J. Geophys. Res., 103:21315–21334. doi:10.1029/​98JB01756

Blackman, D.K., Ildefonse, B., John, B.E., MacLeod, C.J., Ohara, Y., Miller, D.J., and the Expedition 304/305 Project Team, 2004. Oceanic core complex formation, Atlantis Massif—oceanic core complex formation, Atlantis Massif, Mid-Atlantic Ridge: drilling into the footwall and hanging wall of a tectonic exposure of deep, young oceanic lithosphere to study deformation, alteration, and melt generation. IODP Sci. Prosp., 304/305. doi:10.2204/​iodp.sp.304305.2004

Blackman, D.K., Karson, J.A., Kelley, D.S., Cann, J.R., Früh-Green, G.L., Gee, J.S., Hurst, S.D., John, B.E. Morgan, J., Nooner, S.L., Ross, D.K., Schroeder, T.J., and Williams, E.A., 2004. Geology of the Atlantis Massif (MAR 30°N): implications for the evolution of an ultramafic oceanic core complex. Mar. Geophys. Res., 23:443–469. doi:10.1023/​B:MARI.0000018232.14085.75

Bougault, H., Cande, S.C., et al., 1985. Init. Repts. DSDP, 82: Washington (U.S. Govt. Printing Office).

Boschi, C., Früh-Green, G.L., Delacour, A., Karson, J.A., and Kelley, D.S., 2006. Mass transfer and fluid flow during detachment faulting and development of an oceanic core complex, Atlantis Massif (MAR 30 N). Geochem., Geophys., Geosyst., 7:Q01004. doi:10.1029/​2005GC001074

Buck, W.R., 1988. Flexural rotation of normal faults. Tectonics, 7:959–973.

Buck, W.R., Lavier, L.L., and Poliakov, A.N.B., 2005. Modes of faulting at mid-ocean ridges. Nature (London, U. K.), 434:719–723. doi:10.1038/​nature03358

Canales, J.P., Tucholke, B.E., and Collins, J.A., 2004. Seismic reflection imaging of an oceanic detachment fault: Atlantis megamullion (Mid-Atlantic Ridge, 30°10′N). Earth Planet. Sci. Lett., 222:543–560. doi:10.1016/​j.epsl.2004.02.023

Cann, J., Blackman, D., Morgan, J., and MARVEL Cruise Participants, 2001. Geological inferences about the Mid-Atlantic Ridge 30°N core complex from initial analysis of side-scan, bathymetry and basalt petrography. Eos, Trans. Am. Geophys. Union, 82:F1099. (Abstract)

Cann, J.R., Blackman, D.K., Smith, D.K., McAllister, E., Janssen, B., Mello, S., Avgerinos, E., Pascoe, A.R., and Escartin, J., 1997. Corrugated slip surfaces formed at ridge-transform intersections on the Mid-Atlantic Ridge. Nature, (London, U. K.), 385:329–332. doi:10.1038/​385329a0

Cannat, M., Karson, J.A., Miller, D.J., et al., 1995. Proc. ODP, Init. Repts., 153: College Station, TX (Ocean Drilling Program).

Casey, J.F., 1997. Comparison of major- and trace-element geochemistry of abyssal peridotites and mafic plutonic rocks with basalts from the MARK region of the Mid-Atlantic Ridge. In Karson, J.A., Cannat, M., Miller, D.J., and Elthon, D. (Eds.), Proc. ODP, Sci. Results, 153: College Station, TX (Ocean Drilling Program), 181–241.

Collins, J.A., and Detrick, R.S., 1998. Seismic structure of the Atlantis Fracture Zone megamullion, a serpentinized ultramafic massif. Eos, Trans. Am. Geophys. Union, 79(45):800. (Abstract)

Collins, J.A., Tucholke, B.E., and Canales, J.P., 2001. Structure of Mid-Atlantic Ridge megamullions from seismic refraction experiments and multichannel seismic reflection profiling. Eos, Trans. Am. Geophys. Union, 82:F1100. (Abstract)

Collins, J.A., Tucholke, B.E., and Canales, J.P., 2002. Seismic velocity structure of Mid-Atlantic Ridge core complexes. Eos, Trans. Am. Geophys. Union, 83(47):EAE03-A-10390. (Abstract)

Detrick, R., Honnorez, J., Bryan, W.B., Juteau, T., et al., 1988. Proc. ODP, Init. Repts., 106/109: College Station, TX (Ocean Drilling Program).

Dick, H.J.B., Natland, J.H., Alt, J.C., Bach, W., Bideau, D., Gee, J.S., Haggas, S., Hertogen, J.G.H., Hirth, G., Holm, P.M., Ildefonse, B., Iturrino, G.J., John, B.E., Kelley, D.S., Kikawa, E., Kingdon, A., LeRoux, P.J., Maeda, J., Meyer, P.S., Miller, D.J., Naslund, H.R., Niu, Y.-L., Robinson, P.T., Snow, J., Stephen, R.A., Trimby, P.W., Worm, H.-U., and Yoshinobu, A., 2000. A long in situ section of the lower ocean crust: results of ODP Leg 176 drilling at the Southwest Indian Ridge. Earth Planet. Sci. Lett., 179:31–51. doi:10.1016/​S0012-821X(00)00102-3

Dick, H.J.B., Natland, J.H., Miller, D.J., et al., 1999. Proc. ODP, Init. Repts.,176 [Online]. Available from World Wide Web: http://www-odp.tamu.edu/​publications/​176_IR/​176TOC.HTM.

Escartin, J., Mével, C., MacLeod, C.J., and McCaig, A., 2003. Constraints on deformation conditions and the origin of oceanic detachments, the Mid-Atlantic Ridge core complex at 15°45′N. Geochem., Geophys., Geosyst., 4. doi:10.1029/​2002GC000472

Früh-Green, G., Kelley, D.S., Karson, J.A., Blackman, D.K., Boschi, C., John, B.E., Schroeder, T., Ross, D.K., and MARVEL cruise participants, 2001. Hydrothermal alteration, serpentinization and carbonate precipitation at the Lost City vent field (30°N MAR). Eos, Trans. Am. Geophys. Union, 82:F1101.

Früh-Green, G.L., Kelley, D.S., Bernasconie, S.M., Karson, J.A., Ludwig, K.A., Butterfield, D.A., Boschi, C., and Proskurowksi, G., 2003. 30,000 years of hydrothermal activity at the Lost City vent field. Science, 301:495–498. doi:10.1126/​science.1085582

Gillis, K., Mével, C., Allan, J., et al., 1993. Proc. ODP, Init. Repts., 147: College Station, TX (Ocean Drilling Program).

Irvine, T.N., and Baragar, W.R.A., 1971. A guide to the chemical classification of the common volcanic rocks. Can. J. Earth Sci., 8:523–548.

John, B.E., 1987. Geometry and evolution of a mid-crustal extensional fault system: Chemehuevi Mountains, southeastern California. In Coward, M.P., Dewey, J.F., and Hancock, P.L. (Eds.), Continental Extensional Tectonics, Spec. Publ.—Geol. Soc. Am., 28:313–335.

Karson, J., Früh-Green, G.L., Kelley, D., Yoerger, D., and Jakuba, M., 2005. Detachment shear zone of the Atlantis Massif Oceanic Core Complex. Eos, Tans. Am. Geophys. Union, 86(52):T34B-03. (Abstract)

Karson, J.A., 2003. Unconformities in slow-spread oceanic crust: implications for spreading processes and dismembered ophiolites, Eos, Trans. Am. Geophys. Union, 84:F1506. (Abstract)

Kelemen, P.B., Kikawa, E., Miller, D.J., et al., 2004. Proc. ODP, Init. Repts., 209 [Online]. Available from World Wide Web: http://www-odp.tamu.edu/​publications/​209_IR/​209ir.htm.

Kelley, D.S., Karson, J.A., Blackman, D.K., Früh-Green, G.L., Butterfield, D.A., Lilley, M.D., Olson, E.J., Schrenk, M.O., Roe, K.K., Lebon, G.T., and Rivizzigno, P., 2001. An off-axis hydrothermal vent field near the Mid-Atlantic Ridge at 30°N. Nature (London, U. K.), 412(6843):145–149. doi:10.1038/​35084000

Kelley, D.S., Karson, J.A., Früh-Green, G.L., Yoerger, D.R., Shank, T.M., Butterfield, D.A., Hayes, J.M., Schrenk, M.O., Olson, E.J., Proskurowski, G., Jakuba, M., Bradley, A., Larson, B., Ludwig, K., Glickson, D., Buckman, K., Bradley, A.S., Brazelton, W.J., Roe, K., Elend, M.J., Delacour, A., Bernasconi, S.M., Lilley, M.D., Baross, J.A., Summons, R.E., and Sylva, S.P., 2005. A serpentinite-hosted ecosystem: the Lost City hydrothermal field. Science, 307:1428–1434. doi:10.1126/​science.1102556

Lavier, L., Buck, W.R., and Poliakov, A.N.B., 1999. Self-consistent rolling-hinge model for the evolution of large-offset low-angle normal faults. Geology, 27:1127–1130. doi:10.1130/​0091-7613(1999)027<1127:SCRHMF>2.3.CO;2

Le Maitre, R.W., Bateman, P., Dudek, A., Keller, J., Lameyre, J., Le Bas, M.J., Sabine, P.A., Schmid, R., Sorensen, H., Streckeisen, A., Woolley, A.R., and Zanettin, B., 1989. A Classification of Igneous Rocks and Glossary of Terms: Beijing (Geological Publishing House). (Trans. by Bixiang, W., Kun, S., and Lijun, B.)

Levitus, S., and Boyer, T.P., 1994. World Ocean Atlas 1994 (Vol. 4): Temperature. NOAA Atlas NESDIS 4.

MacLeod, C.J., Escartin, J., Banerji, D., Banks, G.J., Gleeson, M., Irving, D.H.B., Lilly, R.M., McCaig, A.M., Niu, Y., Allerton, S., and Smith, D.K., 2002. Direct geological evidence for oceanic detachment faulting: the Mid-Atlantic Ridge, 15°45′N. Geology, 30:10:879–882. doi:10.1130/​0091-7613(2002)030<0879:DGEFOD>2.0.CO;2

McFadden, P.L., and Reid, A.B., 1982. Analysis of paleomagnetic inclination data. Geophys. J. R. Astron. Soc., 69:307–319.

Melson, W.G., Rabinowitz, P.D., et al., 1979. Init. Repts. DSDP, 45: Washington (U.S. Govt. Printing Office).

Miller, M.G., 1996. Ductility in fault gouge from a normal fault system, Death Valley, California: a mechanism for strengthening and relevance to paleoseismicity. Geology, 24:603–606. doi:10.1130/​0091-7613(1996)024<0603:DIFGFA>2.3.CO;2

Nooner, S.L., Sasagawa, G.S., Blackman, D.K., and Zumberge, M.A., 2003. Constraints on crustal structure at the Mid-Atlantic Ridge from seafloor gravity measurements made at the Atlantis Massif. Geophys. Res. Lett., 30:1446. doi:10.1029/​2003GL017126

O’Hanley, D.S., 1996. Serpentinites: records of tectonic and petrological history. Oxford Monogr. Geol. Geophys., Vol. 34.

Pettigrew, T.L., Casey, J.F., Miller, D.J., et al., 1999. Proc. ODP, Init. Repts., 179 [CD-ROM]. Available from: Ocean Drilling Program, Texas A&M University, College Station, TX 77845-9547, U.S.A. [HTML]

Robinson, P.T., Von Herzen, R., et al., 1989. Proc. ODP, Init. Repts., 118: College Station, TX (Ocean Drilling Program).

Schroeder, T., and John, B.E., 2004. Strain localization on an oceanic detachment fault system, Atlantis Massif, 30°N, Mid-Atlantic Ridge. Geochem., Geophys., Geosyst., 5. doi:10.1029/​2004GC000728

Schroeder, T., John, B.E., Kelley, D., and MARVEL cruise participants, 2001. Microstructural observations of an ‘oceanic core complex’: Atlantis Massif, 30°N Mid-Atlantic Ridge, Eos, Trans. Am. Geophys. Union, 82:F1100.

Shipboard Scientific Party, 1999. Site 735. In Dick, H.J.B., Natland, J.H., Miller, D.J., et al., Proc. ODP, Init. Repts., 176 [Online]. Available from World Wide Web: http://www-odp.tamu.edu/​publications/​176_IR/​CHAP_03/​Output/​chap_03.htm.

Spencer, J.E., 1985. Miocene low-angle normal faulting and dike emplacement, Homer Mountain and surrounding areas, southeastern California and southernmost Nevada. Geol. Soc. Am. Bull., 96:110–1155. doi:10.1130/​0016-7606(1985)96<1140:MLNFAD>2.0.CO;2

Tucholke, B.E., Lin, J., and Kleinrock, M.C., 1998. Megamullions and mullion structure defining oceanic metamorphic core complexes on the Mid-Atlantic Ridge. J. Geophys. Res., 103:9857–9866. doi:10.1029/​98JB00167

Tucholke, B.E., Stewart, W.K., and Kleinrock, M.C., 1997. Long-term denudation of ocean crust in the central North Atlantic Ocean. Geology, 25(2):171–174. doi:10.1130/​0091-7613(1997)025<0171:LTDOOC>2.3.CO;2

Vening Meinesz, F.A., 1950. Les graben africains resultant de compression ou de tension dans la croute terrestres? Kol. Inst. Bull., 21:539–552.

Wernicke, B.P., and Axen, G.J., 1988. On the role of isostasy in the evolution of normal fault systems. Geology, 16:848–451. doi:10.1130/​0091-7613(1988)016<0848:OTROII>2.3.CO;2