AbstractWe report ab initio density functional theory calculations on iron–nickel (FeNi) alloys at conditions representative of the Earth's inner core. We test different concentrations of Ni, up to ∼39wt% using ab initio lattice dynamics, and investigate the thermodynamic and vibrational stability of the three candidate crystal structures (bcc, hcp and fcc). First of all, at inner core pressures, we find that pure Fe transforms from the hcp to the fcc phase at around 6000K. Secondly, in agreement with low pressure experiments on Fe–Ni alloys, we find the fcc structure is stabilised by the incorporation of Ni under core pressures and temperatures. Our results show that the fcc structure may, therefore, be stable under core conditions depend...
The nature of the stable phase of iron in the Earth's solid inner core is still highly controversial...
The Earths solid core is mostly composed of iron. However, despite being central to our understandin...
Ab initio finite temperature molecular dynamics simulations have been used to calculate the free ene...
We report ab initio density functional theory calculations on iron–nickel (FeNi) alloys at condition...
AbstractWe report ab initio density functional theory calculations on iron–nickel (FeNi) alloys at ...
Ni is the second most abundant element in the Earth's core. Yet, its effects on the inner core's str...
The Earth’s core is primarily composed of iron, alloyed with 5-20% nickel. Interpretation of the hi...
The Earth’s core is largely composed of iron (Fe), alloyed with less dense elements such as sulphur...
We theoretically document the stability of hcp iron for pressure-temperature conditions of the Earth...
The Earth's solid inner core consists mainly of iron (Fe), alloyed with lighter elements. such as si...
We theoretically document the stability of hcp iron for pressure–temperature conditions of the Earth...
The phase relations of an Fe10wt%Ni alloy were investigated in a diamond anvil cell up to 86 GPa and...
The solid Earth's inner core (IC) is a sphere with a radius of about 1300 km in the center of the Ea...
The solid Earths inner core (IC) is a sphere with a radius of about 1300 km in the center of the Ear...
Phase relations in Fe–5 wt%Ni–4 wt%Si alloy was examined in an internally resistive heated diamond a...
The nature of the stable phase of iron in the Earth's solid inner core is still highly controversial...
The Earths solid core is mostly composed of iron. However, despite being central to our understandin...
Ab initio finite temperature molecular dynamics simulations have been used to calculate the free ene...
We report ab initio density functional theory calculations on iron–nickel (FeNi) alloys at condition...
AbstractWe report ab initio density functional theory calculations on iron–nickel (FeNi) alloys at ...
Ni is the second most abundant element in the Earth's core. Yet, its effects on the inner core's str...
The Earth’s core is primarily composed of iron, alloyed with 5-20% nickel. Interpretation of the hi...
The Earth’s core is largely composed of iron (Fe), alloyed with less dense elements such as sulphur...
We theoretically document the stability of hcp iron for pressure-temperature conditions of the Earth...
The Earth's solid inner core consists mainly of iron (Fe), alloyed with lighter elements. such as si...
We theoretically document the stability of hcp iron for pressure–temperature conditions of the Earth...
The phase relations of an Fe10wt%Ni alloy were investigated in a diamond anvil cell up to 86 GPa and...
The solid Earth's inner core (IC) is a sphere with a radius of about 1300 km in the center of the Ea...
The solid Earths inner core (IC) is a sphere with a radius of about 1300 km in the center of the Ear...
Phase relations in Fe–5 wt%Ni–4 wt%Si alloy was examined in an internally resistive heated diamond a...
The nature of the stable phase of iron in the Earth's solid inner core is still highly controversial...
The Earths solid core is mostly composed of iron. However, despite being central to our understandin...
Ab initio finite temperature molecular dynamics simulations have been used to calculate the free ene...