Modeling the melting of multicomponent systems: the case of MgSiO3 perovskite under lower mantle conditions

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Cono Di Paola
John P. Brodholt
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[1] University College London,Department of Earth Sciences
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Scientific Reports | / 6卷
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Knowledge of the melting properties of materials, especially at extreme pressure conditions, represents a long-standing scientific challenge. For instance, there is currently considerable uncertainty over the melting temperatures of the high-pressure mantle mineral, bridgmanite (MgSiO3-perovskite), with current estimates of the melting T at the base of the mantle ranging from 4800 K to 8000 K. The difficulty with experimentally measuring high pressure melting temperatures has motivated the use of ab initio methods, however, melting is a complex multi-scale phenomenon and the timescale for melting can be prohibitively long. Here we show that a combination of empirical and ab-initio molecular dynamics calculations can be used to successfully predict the melting point of multicomponent systems, such as MgSiO3 perovskite. We predict the correct low-pressure melting T and at high-pressure we show that the melting temperature is only 5000 K at 120 GPa, a value lower than nearly all previous estimates. In addition, we believe that this strategy is of general applicability and therefore suitable for any system under physical conditions where simpler models fail.
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[1]  
Tschauner O(2014)Discovery of bridgmanite, the most abundant mineral in Earth, in a shocked meteorite Science 346 1100-1102
[2]  
Ito E(1992)Melting of ferromagnesian silicates under the lower mantle conditions Geophysical Monograph Series 67 315-321
[3]  
Katsura T(2012)Melting phase relations in the MgO–MgSiO Earth Planet. Sci. Lett. 345–348 159-170
[4]  
Liebske C(1987) system between 16 and 26 GPa: implications for melting in earth’s deep interior J. Geophys. Res. 92 1143711444-612
[5]  
Frost DJ(1989)Measurement of the melting curve of Mg0.9Fe0.1SiO Geophys. Res. Lett. 16 609-555
[6]  
Heinz DL(2004) at lower mantle conditions and its geophysical implications Geophys. Res. Lett. 31 L14612-299
[7]  
Jeanloz R(1993)Simulating the core-mantle boundary: an experimental study of high-pressure reactions between silicates and liquid iron authors Science 262 553-4047
[8]  
Knittel E(2005)Shock-induced melting of MgSiO Phys. Rev. Lett. 94 195701-5155
[9]  
Jeanloz R(2005) perovskite and implications for melts in Earth’s lowermost mantle Science 310 297-220
[10]  
Akins JA(2009)Melting of (Mg, Fe)SiO J. Geophys. Res: Solid Earth 114 B01203-S982