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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Antarctica
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Antarctic Peninsula (1)
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South Shetland Islands (1)
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Asia
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Far East
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Japan
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Primary terms
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Antarctica
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Asia
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harzburgite (2)
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lherzolite (1)
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spinel peridotite (1)
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volcanic rocks
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andesites
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boninite (2)
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basalts
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mid-ocean ridge basalts (1)
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tholeiite (1)
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basanite (1)
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glasses
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obsidian (1)
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pyroclastics
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metals
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West Pacific
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United States
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Past eruptions of a newly discovered active, shallow, silicic submarine volcano near Tokyo Bay, Japan
Highly refractory dunite formation at Gibbs Island and Bruce Bank, and its role in the evolution of the circum-Antarctic continent
Subduction of the Izanagi-Pacific Ridge–transform intersection at the northeastern end of the Eurasian plate
Accounting for the species-dependence of the 3500 cm –1 H 2 O t infrared molar absorptivity coefficient: Implications for hydrated volcanic glasses
Izu-Bonin-Mariana Forearc Crust as a Modern Ophiolite Analogue
Composition of the mantle lithosphere beneath south-central Laurentia: Evidence from peridotite xenoliths, Knippa, Texas
Diversity of melt conduits in the Izu-Bonin-Mariana forearc mantle: Implications for the earliest stage of arc magmatism
Termination of backarc spreading: Zircon dating of a giant oceanic core complex
Syncollisional rapid granitic magma formation in an arc-arc collision zone: Evidence from the Tanzawa plutonic complex, Japan
Mafic rocks from the Ryoke Belt, southwest Japan: implications for Cretaceous Ryoke/San-yo granitic magma genesis
Mafic rocks in the Ryoke belt, the Cretaceous granitic province in Southwest Japan, occur in two modes: (1) as mafic dykes and pillow-shaped enclaves, and (2) as isolated kilometre-sized bodies of gabbroic cumulate. The dykes and pillows have fine-grained textures with thin radiating plagioclase laths, indicative of quenching. The gabbroic cumulates are predominantly coarse-grained and commonly lithologically layered. SHRIMP zircon U-Pb ages of both types of mafic rocks are in the range 71–86 Ma, late Cretaceous. The mafic rocks become younger eastwards, matching the along-arc age trend of the associated Cretaceous granites (Nakajima et al. 1990). Both types of mafic rocks were apparently generated during the same magmatic event that produced the Ryoke/San-yo granites. The mafic dykes and pillows are aphyric basaltic-andesites to andesites (SiO 2 54–60 wt.%), with microphenocrysts of biotite and hornblende. They have a composition which is similar to mafic rocks from the northern Sierra Nevada, and also to medium-K calc-alkaline rocks from present-day arc volcanics. The gabbroic cumulates are mostly pyroxene-hornblende gabbros (SiO 2 43–52 wt.%). Their bulk-rock chemical compositions are mostly unlike any magma compositions. Both types of mafic rocks from the Ryoke belt have relatively high 87 Sr/ 86 Sr initial ratios (SrI), 0.7071–0.7097, which are similar to those of the associated granites. The granites were formed either by fractional crystallisation of the mafic magmas, or by partial melting of newly formed mafic rocks at depth. The high SrI indicates that the mafic magmas were derived from enriched mantle or mixed with enriched crustal materials. Even if the mixing occurred between primitive basaltic magma and metasedimentary rocks, then the basaltic andesite-andesite magmas must have contained more than 60% mantle-derived components. The Cretaceous magmatism in Southwest Japan represents a major episode of crustal growth by additions from the upper mantle in an arc setting.