International audienceEarth's core is less dense than iron, and therefore it must contain " light elements, " such as S, Si, O, or C. We use ab initio molecular dynamics to calculate the density and bulk sound velocity in liquid metal alloys at the pressure and temperature conditions of Earth's outer core. We compare the velocity and density for any composition in the (Fe–Ni, C, O, Si, S) system to radial seismological models and find a range of compositional models that fit the seismo-logical data. We find no oxygen-free composition that fits the seismological data, and therefore our results indicate that oxygen is always required in the outer core. An oxygen-rich core is a strong indication of high-pressure and high-temperature conditions...
The Earth’s core is largely composed of iron (Fe), alloyed with less dense elements such as sulphur...
Silicon solubility in liquid Fe-rich metal was measured experimentally as a function of pressure, te...
Using ab initio simulations on Fe-Ni-S-C-O-Si liquids, we constrain the origin and composition of th...
International audienceEarth's core is less dense than iron, and therefore it must contain " light el...
On the basis of geophysical observations, cosmochemical constraints, and high-pressure experimental ...
The standard model of Earth’s core evolution has the bulk composition set at formation, with slow co...
We measured compressional sound velocities in light-element alloys of iron (FeO, FeSi, FeS, and FeS2...
International audienceWe measured compressional sound velocities in light element alloys of iron (Fe...
International audienceWe measured compressional sound velocities in light element alloys of iron (Fe...
International audienceThe formation of Earth’s core left behind geophysical and geochemical signatur...
Seismic data demonstrate that the density of the liquid core is some 8-10 % less than pure iron. Eq...
It is shown how ab initio techniques based on density functional theory can be used to calculate the...
Knowledge of the composition of the Earth's core(1-3) is important for understanding its melting poi...
Constraining the core’s composition is essential for understanding Earth accretion, core formation a...
Using ab initio simulations on Fe-Ni-S-C-O-Si liquids, we constrain the origin and composition of th...
The Earth’s core is largely composed of iron (Fe), alloyed with less dense elements such as sulphur...
Silicon solubility in liquid Fe-rich metal was measured experimentally as a function of pressure, te...
Using ab initio simulations on Fe-Ni-S-C-O-Si liquids, we constrain the origin and composition of th...
International audienceEarth's core is less dense than iron, and therefore it must contain " light el...
On the basis of geophysical observations, cosmochemical constraints, and high-pressure experimental ...
The standard model of Earth’s core evolution has the bulk composition set at formation, with slow co...
We measured compressional sound velocities in light-element alloys of iron (FeO, FeSi, FeS, and FeS2...
International audienceWe measured compressional sound velocities in light element alloys of iron (Fe...
International audienceWe measured compressional sound velocities in light element alloys of iron (Fe...
International audienceThe formation of Earth’s core left behind geophysical and geochemical signatur...
Seismic data demonstrate that the density of the liquid core is some 8-10 % less than pure iron. Eq...
It is shown how ab initio techniques based on density functional theory can be used to calculate the...
Knowledge of the composition of the Earth's core(1-3) is important for understanding its melting poi...
Constraining the core’s composition is essential for understanding Earth accretion, core formation a...
Using ab initio simulations on Fe-Ni-S-C-O-Si liquids, we constrain the origin and composition of th...
The Earth’s core is largely composed of iron (Fe), alloyed with less dense elements such as sulphur...
Silicon solubility in liquid Fe-rich metal was measured experimentally as a function of pressure, te...
Using ab initio simulations on Fe-Ni-S-C-O-Si liquids, we constrain the origin and composition of th...