Laser-driven shock compression experiments reveal the presence of a phase transition in MgSiO3 over the pressure-temperature range 300–400 GPa and 10 000–16 000 K, with a positive Clapeyron slope and a volume change of ∼6.3 (±2.0) percent. The observations are most readily interpreted as an abrupt liquid-liquid transition in a silicate composition representative of terrestrial planetary mantles, implying potentially significant consequences for the thermal-chemical evolution of extrasolar planetary interiors. In addition, the present results extend the Hugoniot equation of state of MgSiO3 single crystal and glass to 950 GPa
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
New shock wave equation of state (EOS) data for enstatite and MgSiO_3 glass constrain the density ch...
Hugoniots of lower mantle mineral compositions are sensitive to the conditions where they cross phas...
The physical and chemical properties of materials are profoundly affected by highpressure and temper...
The physical and chemical properties of materials are profoundly affected by high pressure and tempe...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
Shock processing via impacts is a common occurrence during planet formation and evolution. Character...
We present new equation-of-state (EoS) data acquired by shock loading to pressures up to 245 GPa on ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
New shock wave equation of state (EOS) data for enstatite and MgSiO_3 glass constrain the density ch...
Hugoniots of lower mantle mineral compositions are sensitive to the conditions where they cross phas...
The physical and chemical properties of materials are profoundly affected by highpressure and temper...
The physical and chemical properties of materials are profoundly affected by high pressure and tempe...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
Shock processing via impacts is a common occurrence during planet formation and evolution. Character...
We present new equation-of-state (EoS) data acquired by shock loading to pressures up to 245 GPa on ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Deep inside planets, extreme density, pressure, and temperature strongly modify the properties of th...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
Two decades of exoplanet discoveries brought the physics of planetary interiors among the topics of ...
New shock wave equation of state (EOS) data for enstatite and MgSiO_3 glass constrain the density ch...
Hugoniots of lower mantle mineral compositions are sensitive to the conditions where they cross phas...