|
REFERENCES | |
REFERENCES
Arai, S. (1994). Compositional variation of olivine–chromian spinel in Mg-rich magmas as a guide to their residual spinel peridotites. Journal of Volcanology and Geothermal Research 59, 279–293.
Baker, M. B., Newman, S., Beckett, J. R. & Stolper, E. M. (1992). Separating liquid from crystals in high-pressure melting experiments using diamond aggregates. Geological Society of America, 1992 Annual Meeting. Boulder, CO: Geological Society of America, p. 256.
Ballhaus, C. (1993). Redox states of lithospheric and asthenospheric upper mantle. Contributions to Mineralogy and Petrology 114, 331–348.
Ballhaus, C. G., Berry, R. F. & Green, D. H. (1990). Oxygen fugacity controls in the Earth''s upper mantle. Nature 348, 437–440.
Ballhaus, C., Berry, R. F. & Green, D. H. (1991). High pressure experimental calibration of the olivine–orthopyroxene–spinel oxygen geobarometer: implications for the oxidation state of the upper mantle. Contributions to Mineralogy and Petrology 107, 27–40.
Bloomfield, A. L. & Arculus, R. J. (1989). Magma mixing in the San Francisco volcanic field, AZ: petrogenesis of the O''Leary Peak and Strawberry Crater volcanics. Contributions to Mineralogy and Petrology 102, 429–453.
Brenan, J. M., Shaw, H. F. & Ryerson, F. J. (1995). Experimental evidence for the origin of lead enrichment in convergent-margin magmas. Nature 378, 54–56.
Chang, Q., Shibata, T., Shinotsuka, K., Yoshikawa, M. & Tatsumi, Y. (2003). Precise determination of trace elements in geological standard rocks using inductively coupled plasma mass spectrometry (ICP-MS). Frontier Research on Earth Evolution 1, 357–362.
Chauvel, C., Hofmann, A. W. & Vidal, P. (1992). HIMU–EM: the French Polynesian connection. Earth and Planetary Science Letters 110, 99–119.
Choi, S. H., Jwa, Y. J. & Lee, H. Y. (2002). Geothermal gradient of the upper mantle beneath Jeju Island, Korea: evidence from mantle xenoliths. Island Arc 10, 175–193.
Cousens, B. L., Allan, J. F. & Gorton, M. P. (1994). Subduction-modified pelagic sediments as the enriched component in back-arc basalts from the Japan Sea; Ocean Drilling Program sites 797–794. Contributions to Mineralogy and Petrology 117, 421–434.
Eichelberger, J. C. (1975). Origin of andesite and dacite: evidence of mixing at Glass Mountain in California and at other Circum-Pacific volcanoes. Geological Society of America Bulletin 86, 1381–1391.
Falloon, T. J. & Green, D. H. (1987). Anhydrous partial melting of MORB pyrolite and other peridotite compositions at 10kbar: implications for the origin of primitive MORB glasses. Mineralogy and Petrology 37, 181–219.
Falloon, T. J. & Green, D. H. (1988). Anhydrous partial melting of peridotite from 8 to 35 kb and the petrogenesis of MORB. In: Menzies, M. A. & Cox, K. G. (eds) Oceanic and Continental Lithosphere; Similarities and Differences. Oxford: Clarendon Press, pp. 379–414.
Falloon, T. J., Green, D. H., Hatton, C. J. & Harris, K. L. (1988). Anhydrous partial melting of a fertile and depleted peridotite from 2 to 30kb and application to basalt petrogenesis. Journal of Petrology 29, 1257–1282.
Fujii, T. & Scarfe, C. M. (1985). Composition of liquids coexisting with spinel lherzolite at 10 kbar and the genesis of MORBs. Contributions to Mineralogy and Petrology 90, 18–28.
Fukao, Y., Widiyantoro, S. & Obayashi, M. (2001). Stagnant slabs in the upper and lower mantle transition region. Reviews of Geophysics 39, 291–323.
Goto, A. & Tatsumi, Y. (1994). Quantitative analysis of rock samples by an X-ray fluorescence spectrometer (I). Rigaku Journal 11, 40–59.
Goto, A. & Tatsumi, Y. (1996). Quantitative analysis of rock samples by an X-ray fluorescence spectrometer (II). Rigaku Journal 13, 20–38.
Green, T. H. (1994). Experimental studies of trace-element partitioning applicable to igneous petrogenesis: Sedona 16 years later. Chemical Geology 117, 1–36.
Hauri, E. H. & Hart, S. R. (1993). Re–Os isotope systematics of HIMU and EMII oceanic island basalts from the South Pacific Ocean. Earth and Planetary Science Letters 114, 353–371.
Hawkesworth, C. J., Gallagher, K., Hergt, J. M. & McDermott, F. (1993). Mantle and slab contributions in arc magmas. Annual Review of Earth and Planetary Sciences 21, 175–204.
Hirose, K. & Kushiro, I. (1993). Partial melting of dry peridotites at high pressures: determination of compositions of melts segregated from peridotite using aggregates of diamond. Earth and Planetary Science Letters 114, 477–489.
Johnson, K. T. M. & Kushiro, I. (1992). Segregation of high pressure partial melts from peridotite using aggregates of diamond: a new experimental approach. Geophysical Research Letters 19, 1703–1706.
Kawamoto, T. (1992). Dusty and honeycomb plagioclase: indicators of processes in the Uchino stratified magma chamber, Izu Peninsula, Japan. Journal of Volcanology and Geothermal Research 49, 191–208.
Kinzler, R. J., Grove, T. L. & Recca, S. I. (1990). An experimental study on the effect of temperature and melt composition on the partitioning of nickel between olivine and silicate melt. Geochimica et Cosmochimica Acta 54, 1255–1265.
Kogiso, T., Tatsumi, Y. & Nakano, S. (1997a). Trace element transport during dehydration processes in the subducted oceanic crust: 1, Experiments and implications for the origin of ocean island basalts. Earth and Planetary Science Letters 148, 193–205.
Kogiso, T., Tatsumi, Y., Shimoda, G. & Barsczus, H. G. (1997b). High-μ (HIMU) ocean island basalts in southern Polynesia: new evidence for whole mantle scale recycling of subducted oceanic crust. Journal of Geophysical Research 102, 8085–8103.
Kushiro, I. & Hirose, K. (1992). Experimental determination of composition of melt formed by equilibrium partial melting of peridotite at high pressures using aggregates of diamond grains. Proceedings of the Japan Academy 68, 63–68.
Le Bas, M. J. & Streckeisen, A. L. (1991). The IUGS systematics of igneous rocks. Journal of the Geological Society, London 148, 825–833.
Lee, W. M. (1982). Petrology and geochemistry of Jeju volcanic island, Korea. Science Reports of Tohoku University, Series III 15, 177–256.
Matsui, Y., Onuma, N., Nagasawa, H., Higuchi, H. & Banno, S. (1977). Crystal structure control in trace element partition between crystal and magma. Bulletin de la Société Française de Minéralogie et de Cristallographie 100, 315–324.
Menzies, M. A., Rogers, N., Tindle, A. & Hawkesworth, C. J. (1987). Metasomatic and enrichment processes in lithospheric peridotites, an effect of asthenosphere–lithosphere interaction. In: Menzies, M. A. & Hawkesworth, C. J. (eds) Mantle Metasomatism. New York: Academic Press, pp. 313–361.
Miyashiro, A. (1978). Nature of alkalic volcanic rock series. Contributions to Mineralogy and Petrology 66, 91–104.
Miyazaki, T., Shibata, T. & Yoshikawa, M. (2003). New synthesis method of silica-gel for lead isotope analysis. Proceedings of the Japan Academy 79, 58–62.
Nabelek, P. & Langmuir, C. H. (1986). The significance of unusual zoning in olivines from FAMOUS area basalt 527-1-1. Contributions to Mineralogy and Petrology 93, 1–8.
Nakamura, M. (1995). Residence time and crystallization history of nickeliferous olivine phenocrysts from the northern Yatsugatake volcanoes, central Japan: application of a growth and diffusion model in the system Mg–Fe–Ni. Journal of Volcanology and Geothermal Research 66, 81–100.
Nohda, S., Chen, H. & Tatsumi, Y. (1991). Geochemical stratification in the upper mantle beneath NE China. Geophysical Research Letters 18, 97–100.
Otofuji, Y., Matsuda, T. & Nohda, S. (1985). Paleomagnetic evidence for the Miocene counter-clockwise rotation of Northeast Japan—rifting process of the Japan Arc. Earth and Planetary Science Letters 75, 267–277.
Park, J. B. (1994). Geochemical evolution of the Cheju volcanic island, Korea. Ph.D. thesis, Yonsei University, 303 pp.
Pearce, J. A. (1983). Role of the sub-continental lithosphere in magma genesis at active continental margins. In: Hawkesworth, C. J. & Norry, M. J. (eds) Continental Basalts and Mantle Xenoliths. Nantwich: Shiva, pp. 230–249.
Roeder, P. L. & Emslie, R. F. (1970). Olivine–liquid equilibrium. Contributions to Mineralogy and Petrology 29, 275–289.
Sakuyama, M. (1979). Evidence of magma mixing: petrological study of Shirouma-Oike calc-alkaline andesite volcano, Japan. Journal of Volcanology and Geothermal Research 5, 179–208.
Sato, H. (1977). Nickel content of basaltic magmas: identification of primary magmas and a measure of the degree of olivine fractionation. Lithos 10, 113–120.
Sato, H. & Banno, S. (1983). NiO–Fo relation of magnesian olivine phenocryst in high-magnesian andesite and associated basalt–andesite–sanukite from Northeast Shikoku, Japan. Bulletin of the Volcanological Society of Japan 28, 141–156.
Shibata, T., Yoshikawa, M. & Tatsumi, Y. (2003). An analytical method for determining precise Sr and Nd isotopic compositions and results for thirteen rock standard materials. Frontier Research on Earth Evolution 1, 363–367.
Shukuno, H. (2003). Quantitative analysis of rock-forming minerals and volcanic glasses by electron probe microanalyzer. Frontier Research on Earth Evolution 1, 129–136.
Shukuno, H. & Arai, S. (1999). Olivine–chromian spinel compositional relationships of the Cenozoic alkali basalts from Southwest Japan: implication for their mantle restites. Journal of Petrology, Mineralogy and Economic Geology 94, 120–140.
Song, Y. & Frey, F. A. (1989). Geochemistry of peridotite xenoliths in basalt from Hannuoba, Eastern China: implications for subcontinental mantle heterogeneity. Geochimica et Cosmochimica Acta 53, 97–113.
Song, Y., Frey, F. A. & Zhi, X. (1990). Isotopic characteristics of Hannuoba basalts, Eastern China: implications for their petrogenesis and the composition of subcontinental mantle. Chemical Geology 88, 35–52.
Sun, S. S. & McDonough, W. F. (1989). Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes. In: Saunders, A. D. & Norry, M. J. (eds) Magmatism in the Ocean Basins. Geological Society, London, Special Publications 42, 313–345.
Takahashi, E. (1990). Speculation on the Archean mantle: missing link between komatiite and depleted garnet peridotite. Journal of Geophysical Research 95, 15941–15954.
Takahashi, E. & Kushiro, I. (1983). Melting of a dry peridotite at high pressures and basalt magma genesis. American Mineralogist 68, 859–879.
Tamaki, K., Suyehiro, K., Allan, J., Ingle, J. C., Jr & Pisciotto, K. A. (1992). Tectonic synthesis and implications of Japan Sea ODP drilling. In: Tamaki, K., et al. (eds) Proceedings of the Ocean Drilling Program, Scientific Results, 127/128. College Station, TX: Ocean Drilling Program, pp. 1333–1348.
Tatsumi, Y. (2001). Geochemical modeling of partial melting of subducting sediments and subsequent melt–mantle interaction: generation of high-Mg andesites in the Setouchi volcanic belt, southwest Japan. Geology 29, 323–326.
Tatsumi, Y. & Eggins, S. (1995). Subduction Zone Magmatism. Boston, MA: Blackwell Science, 211 pp.
Tatsumi, Y. & Kogiso, T. (2003). The subduction factory: its role in the evolution of the Earth''s crust and mantle. In: Larter, R. D. & Leat, P. T. (eds) Intra-Oceanic Subduction Systems: Tectonic and Magmatic Processes. Geological Society, London, Special Publications 219, 55–80.
Tatsumi, Y., Sato, K., Sano, T., Arai, R. & Prikhodko, V. S. (2000). Transition from arc to intraplate magmatism associated with backarc rifting: evolution of the Sikhote Alin volcanism. Geophysical Research Letters 27, 1587–1590.
Tatsumi, Y., Nakashima, T. & Tamura, Y. (2002). The petrology and geochemistry of calc-alkaline andesites on Shodo-Shima Island, SW Japan. Journal of Petrology 43, 3–16.
Tatsumi, Y., Shukuno, H., Sato, K., Shibata, T. & Yoshikawa, M. (2003). The petrology and geochemistry of high-Mg andesites at the western tip of the Setouchi volcanic belt, SW Japan. Journal of Petrology 44, 1561–1578.
Walker, D., Shibata, T. & DeLong, S. E. (1979). Abyssal tholeiites from the Oceanographer fracture zone: II, phase equilibria and mixing. Contributions to Mineralogy and Petrology 70, 111–125.
Yang, H.-J., Frey, F. A., Clague, D. A. & Garcia, M. O. (1999). Mineral chemistry of submarine lavas from Hilo Ridge, Hawaii: implications for magmatic processes within Hawaiian rift zones. Contributions to Mineralogy and Petrology 135, 355–372.
Yoshikawa, M., Shibata, T. & Tatsumi, Y. (2001). The Sr, Nd and Pb isotopic ratios of GSJ standard rocks. Annual Report of Beppu Geothermal Research Laboratory, Kyoto University FY2000, 30.
Zhou, X. & Armstrong, R. L. (1982). Cenozoic volcanic rocks of eastern China: secular and geographic trends in chemistry and strontium isotopic composition. Earth and Planetary Science Letters 58, 301–329.
Zhou, X. H., Zhu, B. Q., Riu, R. X. & Chen, W. J. (1988). Cenozoic basaltic rocks in eastern China. In: MacDougall, J. D. (ed.) Continental Flood Basalts. Boston, MA: Kluwer Academic, pp. 311–330.
|