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Featured researches published by M. J. Krawczynski.


Journal of Geophysical Research | 2012

A melting model for variably depleted and enriched lherzolite in the plagioclase and spinel stability fields

Christy B. Till; Timothy L. Grove; M. J. Krawczynski

[1] Here we develop a lherzolite melting model and explore the effects of variations in mantle composition, pressure, temperature, and H2O content on melt composition. New experiments and a compilation of experimental liquids saturated with all of the mantle minerals (olivine, orthopyroxene, clinopyroxene, plagioclase and/or spinel) are used to calibrate a model that predicts the temperature and major element composition of a broad spectrum of primary basalt types produced under anhydrous to low H2O-content conditions at upper mantle pressures. The model can also be used to calculate the temperature and pressure at which primary magmas were produced in the mantle, as well as to model both near-fractional adiabatic decompression and batch melting. Our experimental compilation locates the pressure interval of the plagioclase to spinel transition on the solidus and shows that it is narrow (� 0.1 GPa) for melting of natural peridotite compositions. The multiple saturation boundaries determined by our model provide a method for assessing the appropriate mineral assemblage, as well as the extent of the fractional crystallization correction required to return a relatively primitive liquid to equilibrium with the mantle source. We demonstrate that an inaccurate fractionation correction can overestimate temperature and depths of melting by hundreds of degrees and tens of kilometers, respectively. This model is particularly well suited to examining the temperature and pressure of origin for intraplate basaltic volcanism and is used to examine the petrogenesis of a suite of Holocene basaltic lavas from Diamond Crater in Oregon’s High Lava Plains (HLP).


Annual Review of Earth and Planetary Sciences | 2012

The Role of H2O in Subduction Zone Magmatism

Timothy L. Grove; Christy B. Till; M. J. Krawczynski


Contributions to Mineralogy and Petrology | 2012

Amphibole stability in primitive arc magmas: effects of temperature, H 2 O content, and oxygen fugacity

M. J. Krawczynski; Timothy L. Grove; Harald Behrens


Archive | 2012

The Role of H 2 O in Subduction Zone Magmatism

Timothy L. Grove; Christy B. Till; M. J. Krawczynski


Contributions to Mineralogy and Petrology | 2013

Melts of garnet lherzolite: experiments, models and comparison to melts of pyroxenite and carbonated lherzolite

Timothy L. Grove; Eva S. Holbig; J. A. Barr; Christy B. Till; M. J. Krawczynski


Elements | 2009

Lunar Mare Volcanism: Where Did the Magmas Come From?

Timothy L. Grove; M. J. Krawczynski


Geochimica et Cosmochimica Acta | 2012

Experimental investigation of the influence of oxygen fugacity on the source depths for high titanium lunar ultramafic magmas

M. J. Krawczynski; Timothy L. Grove


Archive | 2008

Magma Ocean Solidification Processes on Vesta

Linda T. Elkins-Tanton; E. Maroon; M. J. Krawczynski; Timothy L. Grove


Archive | 2009

Titanium oxidation state and coordination in the lunar high-titanium glass source mantle

M. J. Krawczynski; S.R. Sutton; Timothy L. Grove; M. Newville


Archive | 2007

Experimental Investigation of the Depth of Origin for the Apollo 15 Red Glass: Evidence for a fO2 Control on Olivine-Opx Multiple Saturation

Timothy L. Grove; M. J. Krawczynski; Etienne Medard

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Timothy L. Grove

Massachusetts Institute of Technology

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J. A. Barr

Massachusetts Institute of Technology

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Christy B. Till

Massachusetts Institute of Technology

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C. B. Till

Arizona State University

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Etienne Medard

Massachusetts Institute of Technology

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Eva S. Holbig

Massachusetts Institute of Technology

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M. Newville

Massachusetts Institute of Technology

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Richard W. Carlson

Carnegie Institution for Science

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