4.7 Article

Melting behavior of (Mg,Fe)O solid solutions at high pressure

Journal

GEOPHYSICAL RESEARCH LETTERS
Volume 35, Issue 13, Pages -

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1029/2008GL034585

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High pressure melting of (Mg,Fe)O ferropericlase, the second most abundant mineral in the Earth's lower mantle, is of fundamental importance for understanding the chemical differentiation, geodynamics and thermal evolution of the Earth's interior. We report the first systematic experimental study of melting behavior in the MgO-FeO system up to 3600 K and 7 GPa, indicating the ideal solution between solid and liquid ( Mg, Fe) O in the MgO-rich portion. The zero pressure melting slope of MgO is similar to 221 K/GPa derived from our resistance heating measurements, which is several times higher than the value from the previous measurements in a CO2-laser heated diamond anvil cell, but consistent with the theoretically predicted melting curves. Our results combined with the previous first-principles simulations suggest that the melting temperature of MgO-rich (Mg,Fe)O is significantly higher than the geotherm through the lower mantle and this would place an upper bound on the solidus of the lower mantle.

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