We present a density functional study of the pressure-induced spin transition in ferrous iron (Fe2+) at the A site in MgSiO3 perovskite. We address the influence of iron concentration and configuration (structural and magnetic), as well as techni-cal issues such as the influence of the exchange correlation functional (LDA versus GGA) on the spin transition pressure. Supercells containing up to 160 atoms were adopted to tackle these issues. We show that there are preferred configurations for high-spin and low-spin iron and that the spin transition pressure depends strongly on iron concentration and all the issues above. Across the spin transition, irons move into the middle of distorted octahedra causing drastic changes in the d states confi...
Phase transitions at high pressure are typically expressed as changes in the material’s crystal stru...
Based on numerical results from density-functional perturbation theory calculations, we show that th...
High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite sol...
We investigate the effect of pressure on the electronic spin state of ferric iron on Al-bearing MgSi...
Using density functional theory + Hubbard U (DFT + U) calculations, we investigate the spin states a...
Using density functional theory plus Hubbard U calculations, we show that the ground state of (Mg, F...
International audienceWe measured the spin state of iron in magnesium silicate perovskite (Mg-0.9,Fe...
International audienceWe measured the spin state of iron in magnesium silicate perovskite (Mg-0.9,Fe...
We present a detailed theoretical study of the electronic, magnetic, and structural properties of ma...
We present a detailed theoretical study of the electronic, magnetic, and structural properties of ma...
We present a detailed theoretical study of the electronic, magnetic, and structural properties of ma...
We investigated the valence state and spin state of iron in an Al-bearing ferromagnesian silicate pe...
We investigated the valence state and spin state of iron in an Al-bearing ferromagnesian silicate pe...
We investigated the valence state and spin state of iron in an Al-bearing ferromagnesian silicate pe...
Based on numerical results from density-functional perturbation theory calculations, we show that th...
Phase transitions at high pressure are typically expressed as changes in the material’s crystal stru...
Based on numerical results from density-functional perturbation theory calculations, we show that th...
High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite sol...
We investigate the effect of pressure on the electronic spin state of ferric iron on Al-bearing MgSi...
Using density functional theory + Hubbard U (DFT + U) calculations, we investigate the spin states a...
Using density functional theory plus Hubbard U calculations, we show that the ground state of (Mg, F...
International audienceWe measured the spin state of iron in magnesium silicate perovskite (Mg-0.9,Fe...
International audienceWe measured the spin state of iron in magnesium silicate perovskite (Mg-0.9,Fe...
We present a detailed theoretical study of the electronic, magnetic, and structural properties of ma...
We present a detailed theoretical study of the electronic, magnetic, and structural properties of ma...
We present a detailed theoretical study of the electronic, magnetic, and structural properties of ma...
We investigated the valence state and spin state of iron in an Al-bearing ferromagnesian silicate pe...
We investigated the valence state and spin state of iron in an Al-bearing ferromagnesian silicate pe...
We investigated the valence state and spin state of iron in an Al-bearing ferromagnesian silicate pe...
Based on numerical results from density-functional perturbation theory calculations, we show that th...
Phase transitions at high pressure are typically expressed as changes in the material’s crystal stru...
Based on numerical results from density-functional perturbation theory calculations, we show that th...
High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite sol...