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Decaying shock studies of phase transitions in MgOSiO2 systems: implications for the Super-Earths interiors

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arxiv 1604.01554 v1 pith:OHYCUZ2O submitted 2016-04-06 physics.geo-ph astro-ph.EP

Decaying shock studies of phase transitions in MgOSiO2 systems: implications for the Super-Earths interiors

classification physics.geo-ph astro-ph.EP
keywords mg2sio4mgsio3meltingphasebeendecayingimplicationsliquids
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We report an experimental study of the phase diagrams of periclase (MgO), enstatite (MgSiO3) and forsterite (Mg2SiO4) at high pressures. We investigated with laser driven decaying shocks the pressure/temperature curves of MgO, MgSiO3 and Mg2SiO4 between 0.2-1.2 TPa, 0.12-0.5 TPa and 0.2-0.85 TPa respectively. A melting signature has been observed in MgO at 0.47 TPa and 9860 K, while no phase changes were observed neither in MgSiO3 nor in Mg2SiO4. An increasing of reflectivity of MgO, MgSiO3 and Mg2SiO4 liquids have been detected at 0.55 TPa -12 760 K, 0.15 TPa - 7540 K, 0.2 TPa - 5800 K, respectively. In contrast to SiO2, melting and metallization of these compounds do not coincide implying the presence of poor electrically conducting liquids close to the melting lines. This has important implications for the generation of dynamos in Super-earths mantles.

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