IBM Arc System Selected References

Tectonics and Geophysics

Bloomer, S.H., Taylor, B., MacLeod, C.J., Stern, R.J., Fryer, P., Hawkins, J.W., and 
        Johnson, L., 1995. Early Arc Volcanism and the Ophiolite Problem: A Perspective 
        from Drilling in the Western Pacific. In B. Taylor and J. Natland (eds.) Active 
        Margins and Marginal Basins of the Western Pacific. AGU Geophysical 
        Monograph 88:1-30.
Fryer, P., 1995. Geology of the Mariana Trough. In B.Taylor (ed.) Backarc Basins: 
        Tectonics and Magmatism. Plenum Press, 237-279.
Fryer, P., 1996, Tectonic evolution of the Mariana convergent margin. Rev. Geophysics, 
        34: 89-125.
Honza, E., and Tamaki, K., 1985. The Bonin Arc. In A.E.M. Nairn, F.G.Stehli, and S. 
        Uyeda (eds.) The Ocean Basins and Margins, vol. 7A. Plenum, 459-502.
Klaus, A., and B. Taylor, Submarine canyon development in the Izu-Bonin forearc: a 
        SeaMARC II and seismic survey of Aoga Shima Canyon, Mar. Geophys. Res., 13, 
        131-152, 1991
Klaus, A., Taylor, B., Moore, G.F., Murakami, F., and Okamura, Y., 1992. Back-arc 
        rifting in the Izu-Bonin Island Arc: Structural evolution of Hachijo and Aoga Shima 
        Rifts. The Island Arc 1:16-31.
Martinez, F., Fryer, P., Baker, N.A., and Yamazaki, T., 1995. Evolution of backarc 
        rifting: Mariana Trough, 20°-24°N.  J.Geophys. Res. 100:3807-3827.
Niitsima, N. 1989. Collision tectonics in the South Fossa Magna, central Japan. Modern 
        Geology 14:3-18.
Stern RJ and Bloomer SH (1992) Subduction zone infancy: Examples from the Eocene 
        Izu-Bonin-Mariana and Jurassic California arcs. Geol. Soc. Amer. Bull. 104, 1621-
        1636.
Suyehiro, K., Takahashi, N., Ariie, Y., Yokoi, Y., Hino, R., Shinohara, M., Kanazawa, 
        T., Hirata, N., Tokuyama, H., Taira, A., 1996. Continental crust, crustal underplating, 
        and low-Q upper mantle beneath an oceanic island arc. Science 272, 390-392.
Taylor, B., 1992. Rifting and the Volcanic-Tectonic Evolution of the Izu-Bonin-Mariana 
        Arc. In B.Taylor, K. Fujioka, et al. (eds.) Proc. ODP, Sci Results 126:627-651.
Taylor, B., Brown, G., Fryer, P., Gill, J.B., Hochstaedter, A.G., Hotta, H., Langmuir, 
        C.H., Leinen, M., Nishimura, A., and Urabe, T. 1990. ALVIN-SeaBeam studies of 
        the Sumisu Rift, Izu-Bonin arc. Earth Planet. Sci. Lett. 100: 127-147.
Taylor, B., Klaus, A., Brown, G.R., and Moore, G.F. 1991. Structural development of 
        Sumisu rift, Izu-Bonin Arc.  J. Geophys. Res. 96:16,113-16,129.
Yamazaki, T., Murakami, F., and Saito, E. 1993. Mode of seafloor spreading in the 
        northern Mariana Trough. 221:207-222.

Magmatic Evolution

Gill, J.R., Hiscott, R.N., and Vidal, P. 1994. Turbidite geochemistry and evolution of the 
        Izu-Bonin arc and continents. Lithos 33:135-168.
Gill, J.R., and Williams, R.W., 1990. Th isotope and U-series studies of subduction-
        related volcanic rocks. Geochim. Cosmochim. Acta 54:1427-1442.
Gribble, R. F., Stern, R.J., Bloomer, S.H., Stüben, D., O'Hearn, T., and Newman,        S. 1996. 
        MORB Mantle and Subduction Components Interact to Generate Basalts in the 
        Southern Mariana Trough back-arc basin. Geochim. Cosmochim.  Acta.60, 2153-
        2166.
Hawkins, J.W., Lonsdale, P.F., Macdougall. J.D., and Volpe, A.M., 1990. Petrology of the 
        axial ridge of the Mariana Trough backarc spreading center. Earth Planet. Sci. Lett. 
        100:226-250.
Hochstaedter, A.G., Gill, J.B., Kusakabe, M., Newman, S., Pringle, M., Taylor, B.,      and 
Fryer, P. 1990. Volcanism in the Sumisu Rift, I. Major element, volatile, and stable 
        isotope geochemistry. Earth Planet. Sci. Lett. 100:179-194.
Hochstaedter, A.G., Gill, J.B., and Morris, J.D., 1990. Volcanism in the Sumisu Rift, II. 
        Subduction and non-subduction related components. Earth Planet. Sci. Lett. 100:195-
        209.
Ikeda, Y., and Yuasa, M. 1989. Volcanism in nascent backarc basins behind the Shichito 
        Ridge and adjacent areas in the Izu-Ogasawara arc, northwest Pacific: Evidence for 
        mixing between E-type MORB and island arc magmas at the initiation of backarc 
        rifting.        Contrib. Mineral. Petrol. 101:377-393.
Lee, J., Stern, R.J., and Bloomer, S.H., 1995. Forty million years of magmatic evolution in 
        the Mariana arc: The tephra glass record.  J. Geophys. Res. 100:17,671-17,687.
Meijer, A., 1982. Mariana-Volcano Islands. In R.S. Thorpe (ed.) Andesites. J. Wiley & 
        Sons, 293-306.
Pearce, J.A., van der Laan, S.R., Arculus, R.J., Murton, B.J., Ishii, T., Peate, D.W.,  and 
        Parkinson, I.J., 1992. Boninite and Harzburgite from Leg 125 (Bonin-Mariana 
        forearc): A case study of magma genesis during the initial stages of subduction. In 
        P. Fryer, J. Pearce et al. (eds.) Proc. ODP, Sci. Results 125 Ocean Drilling 
        Program, 623-   659.
Plank, T., and Langmuir, C.H. 1988. An evaluation of the global variations in the major 
        element chemistry of arc basalts. Earth Planet. Sci. Lett. 90:349-370.
Stern, R.J., Jackson, M.C., Fryer, P., and Ito, E. 1993. O, Sr, Nd, and Pb isotopic 
        composition of the Kasuga Cross-Chain in the Mariana Arc: A new perspective on 
        the K-h  relationship. Earth Planet. Sci. Lett. 119:459-475.
Taylor, R.N., Murton, B.J., and Nesbitt, R.W., 1992. Chemical transects across intra-
        oceanic arcs: implications for the tectonic setting of ophiolites. In L.M.Parson, B.J. 
        Murton, and P. Browning (eds.) Ophiolites and their Modern Oceanic Analogues. 
        Geol.   Soc. London, Spec. Pub. 60:117-132.
Yuasa, M., and Nohara, M., 1992. Petrographic and geochemical along-arc variations of 
        volcanic rocks on the volcanic front of the Izu-Ogasawara (Bonin) Arc. Bull. Geol. 
        Surv. Japan 43:421-456.
Woodhead, J.D., 1989. Geochemistry of the Mariana arc (western Pacific): Source composition and processes. Chem. Geol. 76:1-24.

Subduction Fluxes in the IBM Arc

Alt, J.C., W.C. Shanks, and M.C. Jackson, 1993. Cycling of sulfur in subduction zones: 
        The geochemistry of sulfur in the Mariana Island Arc and back-arc Trough. Earth 
        Planet. Sci. Lett. 119: 477-494.
Fryer, P., Mottl, M., Johnson, L., Haggerty, J., Phipps, S., and Maekawa, H., 1995. 
        Serpentine Bodies in the Forearcs of Western Pacific convergent margins: Origin 
        and associated fluids. In B. Taylor and J. Natland (eds.) Active Margins and 
        Marginal Basins of the Western Pacific. AGU Geophysical Monograph 88:259-279.
Hickey-Vargas R (1991) Isotope characteristics of submarine lavas from the Philippine 
        Sea: implications for the origin of arc and basin magmas of the Philippine tectonic 
        plate.  Earth Planet. Sci. Lett. 107, 290-304.
Hickey-Vargas, R., Hergt, J.M., and Spadea, P. 1995. The Indian Ocean-type isotopic 
        signature in Western Pacific Marginal Basins: Origin and Significance. In B. Taylor 
        and J. Natland (eds.) Active Margins and Marginal Basins of the Western Pacific. 
        AGU Geophysical Monograph 88:175-197.
Ishikawa, T., and Nakamura, E. (1994). Origin of the slab component inferred in arc lavas 
        from across-arc variation of B and Pb isotopes. Nature, 370, 205-208.
Plank, T. and Langmuir, C.H. 1993. Tracing trace elements from sediment input to 
        volcanic output at subduction zones. Nature 362:739-743.
Sakai, R., Kusakabe, M., and Ishii, T. 1990. Origin of waters responsible for 
        serpentinization of the Izu-Ogasawara-Mariana forearc seamounts in view of 
        hydrogen and oxygen isotope ratios. Earth Planet. Sci. Lett. 100:291-303.
Stern, R.J., Morris, J., Bloomer, S.H., and Hawkins, J.H. 1991. The source of the 
        subduction component in convergent margin magmas: Trace element and 
        radiogenic isotope evidence from Eocene boninites, Mariana forearc. Geochim. 
        Cosmochim. acta 55:1467-1481.
Stolper, E., and Newman, S., 1994. The role of water in the petrogenesis of Mariana 
        Trough magmas.  Earth Planet. Sci. Lett. 121:293-325. Hydrothermal Activity and 
        Mineralization
Ishibarishi, J.-I., and Urabe, T., 1995. Hydrothermal activity related to Arc-Backarc 
        magmatism in the Western  Pacific. In B.Taylor (ed.) Backarc Basins: Tectonics 
        and Magmatism. Plenum Press, 451-495.
Kusakabe, M., Mayeda, S., and Nakamura, E., 1990. S, O, and Sr isotope systematcis of 
        active vent materials from the Mariana backarc basin spreading axis at 18°N. Earth 
        Planet. Sci. lett. 100:275-282.
McMurtry, G.M., Sedwick, P.N., Fryer, P., VonderHaar, D.L., and Yeh, H.-W., 1993. 
        Unusual geochemistry of hydrothermal vents on submarine arc volcanoes: Kasuga 
        Seamounts, Northern Mariana Arc. Earth Planet. Sci. Lett. 114:517-528.
Stüben, D., Bloomer, S.H., Taïbi, N.E., Neumann, T., Bendel, V., Püschel, U., Barone, 
        A., Lange, A., Shiying, W., Cuizhong, L., and Deyu, Z. 1992. First results of 
        study of sulphur-rich hydrothermal activity from an island-arc environment: 
        Esmeralda Bank in the Mariana Arc. Marine Geology 103:521-528.
        Deep Sea Drilling and Ocean Drilling Project reports
Kroenke, L., Scott, R., et al., 1981. Inital reports of the Deep Sea Drilling Project, Leg 59 
        (Philippine Sea Plate).
Hussong, D., Uyeda, S., et al., 1981. Inital reports of the Deep Sea Drilling Project, Leg 
        60 (Mariana transect).
Taylor, B., Fujioka, K., et al., 1992. Proceeding of the Ocean Drilling Program, Leg 
        126 (Bonin Arc-Trench System), Scientific Results.  
Fryer, P., Pearce, J., et al., 1992. Proceeding of the Ocean Drilling Program, Leg 125 
        (Bonin-Mariana Region, 716p.), Scientific Results.

Edited Volumes of Interest

Taylor, B., and Natland, J., 1995. Active Margins and Marginal Basins of the Western 
        Pacific, American Geophysical Union, geophysical monograph 88.
Hayes, D.E., 1983.  The Tectonic and Geologic Evolution of Southeast Asian Seas and 
        Islands, Part 2, American Geophysical Union, geophysical monograph 27.
Hayes, D.E., 1983.  The Tectonic and Geologic Evolution of Southeast Asian Seas and 
        Islands, American Geophysical Union, geophysical monograph 23.