International audienceThe position of the critical point determines the top of the liquid-vapor coexistence dome, and it is a physical parameter of fundamental importance in the study of high-energy shocks, including those associated with large planetary impacts. For most major planetary materials, such as oxides and silicates, the estimated position of the critical point is below 1 g /cm3 at temperatures above 5000 K. Here we compute the position of the critical point of one of the most ubiquitous materials: MgO. For this we perform first-principles molecular dynamics simulations. We find the critical density to be in the 0.45-0.6 g /cm3 range and the critical temperature in the 6500-7000 K range. We investigate in detail the behavior of M...
Ab initio thermodynamic properties, equation of state and phase stability of periclase (MgO, B1-type...
A thermodynamically complete ab initio equation of state (EOS) for MgO was obtained using electron d...
International audienceThe smallest forms of stoichiometric and non-stoichiometric MgO clusters appea...
International audienceThe position of the critical point determines the top of the liquid-vapor coex...
First-principles calculations based on density functional theory, both with the local density approx...
We use first-principles methods (no empirical parameters) to establish the phase diagram for the B1(...
We develop a new model to understand and predict the behavior of oxide and silicate melts at extreme...
We provide a plausible resolution of a long-standing controversy relevant to the geophysics communit...
Computer modeling of liquid phase poses tremendous challenge: It requires a relatively large simulat...
Using first principles only, we calculate the melting point of MgO, also called periclase or magnesi...
A computational scheme to predict melting phase relations in multi-component systems at high pressur...
Ab initio thermodynamic properties, equation of state and phase stability of periclase (MgO, B1-typ...
International audienceWe present an ab initio study of MgO at high temperature and pressure, around ...
First-principles calculations on MgSiO(subscript 3) suggested a breakdown into MgO + SiO(subscript 2...
Constant-pressure constant-temperature {\it ab initio} molecular dynamics simulations at high temper...
Ab initio thermodynamic properties, equation of state and phase stability of periclase (MgO, B1-type...
A thermodynamically complete ab initio equation of state (EOS) for MgO was obtained using electron d...
International audienceThe smallest forms of stoichiometric and non-stoichiometric MgO clusters appea...
International audienceThe position of the critical point determines the top of the liquid-vapor coex...
First-principles calculations based on density functional theory, both with the local density approx...
We use first-principles methods (no empirical parameters) to establish the phase diagram for the B1(...
We develop a new model to understand and predict the behavior of oxide and silicate melts at extreme...
We provide a plausible resolution of a long-standing controversy relevant to the geophysics communit...
Computer modeling of liquid phase poses tremendous challenge: It requires a relatively large simulat...
Using first principles only, we calculate the melting point of MgO, also called periclase or magnesi...
A computational scheme to predict melting phase relations in multi-component systems at high pressur...
Ab initio thermodynamic properties, equation of state and phase stability of periclase (MgO, B1-typ...
International audienceWe present an ab initio study of MgO at high temperature and pressure, around ...
First-principles calculations on MgSiO(subscript 3) suggested a breakdown into MgO + SiO(subscript 2...
Constant-pressure constant-temperature {\it ab initio} molecular dynamics simulations at high temper...
Ab initio thermodynamic properties, equation of state and phase stability of periclase (MgO, B1-type...
A thermodynamically complete ab initio equation of state (EOS) for MgO was obtained using electron d...
International audienceThe smallest forms of stoichiometric and non-stoichiometric MgO clusters appea...