The high-pressure melting diagram of iron is a vital ingredient for the geodynamic modeling of planetary interiors. Nonetheless, available data for molten iron show an alarming discrepancy. Herein, we propose an efficient one-phase approach to capture the solid-liquid transition of iron under extreme conditions. Our basic idea is to extend the statistical moment method to determine the density of iron in the TPa region. On that basis, we adapt the work-heat equivalence principle to appropriately link equation-of-state parameters with melting properties. This strategy allows explaining cutting-edge experimental and ab initio results without massive computational workloads. Our theoretical calculations would be helpful to constrain the chemic...
International audienceA comparison between recent experimental [1] and theoretical [2] data on melti...
The Earth's core consists of a solid ball with a radius of 1221 Km, surrounded by a liquid shell whi...
We present a novel method for detecting the solid–liquid phase boundary of compressed iron at high t...
We present a general scheme to accurately determine melting properties of materials from ab initio f...
International audienceUsing ab initio molecular dynamics simulations, we calculate the equation of s...
International audienceUsing $ab\ initio$ molecular dynamics simulations, we calculate the equation o...
The temperature of Earth's core is a parameter of critical importance to model the thermal structure...
The solid inner core of the Earth and the liquid outer core consist mainly of iron(1) so that knowle...
We theoretically document the stability of hcp iron for pressure-temperature conditions of the Earth...
Thermal properties of iron at high pressures (P) and temperatures (T) are essential for determining ...
We theoretically document the stability of hcp iron for pressure–temperature conditions of the Earth...
Ab initio techniques based on density functional theory in the projector-augmented-wave implementati...
The melting curve between ϵ and liquid iron (100GPa< P <300GPa) has been derived by computing Gibbs ...
The inner core of the earth is solid, the outer liquid is composed mainly of iron, and the pressure ...
International audienceExoplanets with masses similar to that of Earth have recently been discovered ...
International audienceA comparison between recent experimental [1] and theoretical [2] data on melti...
The Earth's core consists of a solid ball with a radius of 1221 Km, surrounded by a liquid shell whi...
We present a novel method for detecting the solid–liquid phase boundary of compressed iron at high t...
We present a general scheme to accurately determine melting properties of materials from ab initio f...
International audienceUsing ab initio molecular dynamics simulations, we calculate the equation of s...
International audienceUsing $ab\ initio$ molecular dynamics simulations, we calculate the equation o...
The temperature of Earth's core is a parameter of critical importance to model the thermal structure...
The solid inner core of the Earth and the liquid outer core consist mainly of iron(1) so that knowle...
We theoretically document the stability of hcp iron for pressure-temperature conditions of the Earth...
Thermal properties of iron at high pressures (P) and temperatures (T) are essential for determining ...
We theoretically document the stability of hcp iron for pressure–temperature conditions of the Earth...
Ab initio techniques based on density functional theory in the projector-augmented-wave implementati...
The melting curve between ϵ and liquid iron (100GPa< P <300GPa) has been derived by computing Gibbs ...
The inner core of the earth is solid, the outer liquid is composed mainly of iron, and the pressure ...
International audienceExoplanets with masses similar to that of Earth have recently been discovered ...
International audienceA comparison between recent experimental [1] and theoretical [2] data on melti...
The Earth's core consists of a solid ball with a radius of 1221 Km, surrounded by a liquid shell whi...
We present a novel method for detecting the solid–liquid phase boundary of compressed iron at high t...