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Clustering of arc volcanoes caused by temperature perturbations in the back-arc mantle.A 'hidden' 18O-enriched reservoir in the sub-arc mantle.Petit-spot as definitive evidence for partial melting in the asthenosphere caused by CO2Geochemical evidence for mélange melting in global arcs.Pathway from subducting slab to surface for melt and fluids beneath Mount Rainier.H2O subduction beyond arcsMantle Melting as a Function of Water Content beneath the Mariana ArcThe origin of high-Mg magmas in Mt Shasta and Medicine Lake volcanoes, Cascade Arc (California): higher and lower than mantle oxygen isotope signatures attributed to current and past subductionSubduction-related Volatile Recycling and Magma Generation beneath Central Mexico: Insights from Melt Inclusions, Oxygen Isotopes and Geodynamic ModelsA review of volatiles in the Martian interiorPrimary Silica-rich Picrite and High-Ca Boninite Melt Inclusions in Pyroxenite Veins from the Kamchatka Sub-arc MantleMelt evolution in subarc mantle: evidence from heating experiments on spinel-hosted melt inclusions in peridotite xenoliths from the andesitic Avacha volcano (Kamchatka, Russia)Petrology of Mantle Wedge Lithosphere: New Data on Supra-Subduction Zone Peridotite Xenoliths from the Andesitic Avacha Volcano, KamchatkaFocusing of upward fluid migration beneath volcanic arcs: Effect of mineral grain size variation in the mantle wedgeVariations in melting dynamics and mantle compositions along the Eastern Volcanic Zone of the Gakkel Ridge: insights from olivine-hosted melt inclusionsGrain-size distribution in the mantle wedge of subduction zonesOn topotaxy and compaction during antigorite and chlorite dehydration: an experimental and natural studyMetamorphic Record of High-pressure Dehydration of Antigorite Serpentinite to Chlorite Harzburgite in a Subduction Setting (Cerro del Almirez, Nevado-Filabride Complex, Southern Spain)The high-pressure stability of chlorite and other hydrates in subduction mélanges: experiments in the system Cr2O3–MgO–Al2O3–SiO2–H2OThe effect of H2O on partial melting of garnet peridotite at 3.5 GPaMagma Dynamics with the Enthalpy Method: Benchmark Solutions and Magmatic Focusing at Mid-ocean RidgesPartial melting of fertile peridotite fluxed by hydrous rhyolitic melt at 2–3 GPa: implications for mantle wedge hybridization by sediment melt and generation of ultrapotassic magmas in convergent marginsPetrology and Trace Element Budgets of High-pressure Peridotites Indicate Subduction Dehydration of Serpentinized Mantle (Cima di Gagnone, Central Alps, Switzerland)
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P2860
description
article
@en
im September 2006 veröffentlichter wissenschaftlicher Artikel
@de
wetenschappelijk artikel
@nl
наукова стаття, опублікована у вересні 2006
@uk
ലേഖനം
@ml
name
The influence of H2O on mantle wedge melting
@en
The influence of H2O on mantle wedge melting
@nl
type
label
The influence of H2O on mantle wedge melting
@en
The influence of H2O on mantle wedge melting
@nl
prefLabel
The influence of H2O on mantle wedge melting
@en
The influence of H2O on mantle wedge melting
@nl
P2093
P1476
The influence of H2O on mantle wedge melting
@en
P2093
P356
10.1016/J.EPSL.2006.06.043
P407
P577
2006-09-15T00:00:00Z