We theoretically document the stability of hcp iron for pressure-temperature conditions of the Earth's inner core by separately computing the electronic and phonon contributions to the free energy. These pseudopotential-based quasi-harmonic calculations reveal that the hcp phase remains stable compared to bcc and that the c/a ratio of lattice parameters exhibits only a modest temperature dependence at inner-core conditions
International audienceA comparison between recent experimental [1] and theoretical [2] data on melti...
We have carried out electronic structure calculations for iron under high pressure using pseudopoten...
Ab initio finite temperature molecular dynamics simulations have been used to calculate the free ene...
We theoretically document the stability of hcp iron for pressure–temperature conditions of the Earth...
We present ab initio calculations of the high-temperature axial cla ratio of hexagonal-close-packed ...
The nature of the stable phase of iron in the Earth's solid inner core is still highly controversial...
The Earth's core is primarily composed of iron and I studied the physics of this element. This disse...
Summary. The phase diagram of iron up to 330 GPa is solved using the experimental data of static hig...
The inferred density of the solid inner core indicates that it is predominantly made of iron. In ord...
The solid Earth's inner core (IC) is a sphere with a radius of about 1300 km in the center of the Ea...
The Earth's solid inner core consists mainly of iron (Fe), alloyed with lighter elements. such as si...
The solid Earths inner core (IC) is a sphere with a radius of about 1300 km in the center of the Ear...
AbstractWe report ab initio density functional theory calculations on iron–nickel (FeNi) alloys at ...
Seismological body-wave and free-oscillation studies of the Earth's solid inner core have revealed t...
The high-pressure melting diagram of iron is a vital ingredient for the geodynamic modeling of plane...
International audienceA comparison between recent experimental [1] and theoretical [2] data on melti...
We have carried out electronic structure calculations for iron under high pressure using pseudopoten...
Ab initio finite temperature molecular dynamics simulations have been used to calculate the free ene...
We theoretically document the stability of hcp iron for pressure–temperature conditions of the Earth...
We present ab initio calculations of the high-temperature axial cla ratio of hexagonal-close-packed ...
The nature of the stable phase of iron in the Earth's solid inner core is still highly controversial...
The Earth's core is primarily composed of iron and I studied the physics of this element. This disse...
Summary. The phase diagram of iron up to 330 GPa is solved using the experimental data of static hig...
The inferred density of the solid inner core indicates that it is predominantly made of iron. In ord...
The solid Earth's inner core (IC) is a sphere with a radius of about 1300 km in the center of the Ea...
The Earth's solid inner core consists mainly of iron (Fe), alloyed with lighter elements. such as si...
The solid Earths inner core (IC) is a sphere with a radius of about 1300 km in the center of the Ear...
AbstractWe report ab initio density functional theory calculations on iron–nickel (FeNi) alloys at ...
Seismological body-wave and free-oscillation studies of the Earth's solid inner core have revealed t...
The high-pressure melting diagram of iron is a vital ingredient for the geodynamic modeling of plane...
International audienceA comparison between recent experimental [1] and theoretical [2] data on melti...
We have carried out electronic structure calculations for iron under high pressure using pseudopoten...
Ab initio finite temperature molecular dynamics simulations have been used to calculate the free ene...