Evidence for adiabatic decompression melting in the Southern Mariana Arc from high-Mg lavas and melt inclusions

Author:

Kohut Edward J.,Stern Robert J.,Kent Adam J. R.,Nielsen Roger L.,Bloomer Sherman H.,Leybourne Matthew

Publisher

Springer Science and Business Media LLC

Subject

Geochemistry and Petrology,Geophysics

Reference130 articles.

1. Arai S (1994) Compositional variation of olivine–chromian spinel in Mg-rich magmas as a guide to their residual spinel peridotites. J Volcanol Geotherm Res 59:279–293

2. Bacon CR, Bruggman PE, Christiansen RL, Clynne MA, Donnelly-Nolan JM, Hildreth W (1997) Primitive magmas at five Cascade volcanic fields: melts from hot, heterogeneous sub-arc mantle. Can Mineral 35:397–423

3. Bacon CR, Newman S, Stolper (1992) Water, CO2, Cl, and F in melt inclusions in phenocrysts from three holocene explosive eruptions, Crater Lake, Oregon E M. Am Mineral 77:1021–1030

4. Baker PE, Condliffe EJ (1996) Compositional variations in submarine volcanic ashes from the vicinity of the Vanuatu island arc; a response to ridge-arc collision? J Volcanol Geotherm Res 72:225–238

5. Ballhaus CG, Berry RF, Green DH (1991) High pressure calibration of the olivine–orthopyroxene-spinel oxygen barometer, implications for the oxidation sate of the upper mantle. Contrib Mineral Petrol 107:27–40

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