International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configurations using density-functional theory calculations. The elastic moduli and the bulk seismic wave velocities are weakly affected by the spin transition. However we show that the intrinsic differences in seismic anisotropy between the high-spin and low-spin phases of Fe-bearing perovskite coupled with lattice preferred orientation that can develop due and during the convection may lead to distinct seismic signatures between the top and the bottom of the lower mantle. These signatures should be detectable in observations and they need to be taken into account in tomographic studies of the Earth's lower mantle
We present a density functional study of the pressure-induced spin transition in ferrous iron (Fe2+)...
Acoustic dissipation due to structural phase transitions in minerals could give rise to large seismi...
The iron spin crossover in ferropericlase, the second most abundant mineral in Earth's lower mantle,...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
Changes in the electronic configuration of iron at high pressures toward a spin-paired state within ...
Changes in the electronic configuration of iron at high pressures toward a spin-paired state within ...
The most abundant mineral on Earth has a perovskite crystal structure and a chemistry that is domina...
Using density functional theory plus Hubbard U calculations, we show that the ground state of (Mg, F...
We investigate the effect of pressure on the electronic spin state of ferric iron on Al-bearing MgSi...
Mineralogical models of the planet indicate that the lower mantle, the most voluminous layer of the ...
Abstract The two most abundant minerals in the Earth’s lower mantle are bridgmanite and ferropericla...
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...
High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite sol...
We present a density functional study of the pressure-induced spin transition in ferrous iron (Fe2+)...
Acoustic dissipation due to structural phase transitions in minerals could give rise to large seismi...
The iron spin crossover in ferropericlase, the second most abundant mineral in Earth's lower mantle,...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
Changes in the electronic configuration of iron at high pressures toward a spin-paired state within ...
Changes in the electronic configuration of iron at high pressures toward a spin-paired state within ...
The most abundant mineral on Earth has a perovskite crystal structure and a chemistry that is domina...
Using density functional theory plus Hubbard U calculations, we show that the ground state of (Mg, F...
We investigate the effect of pressure on the electronic spin state of ferric iron on Al-bearing MgSi...
Mineralogical models of the planet indicate that the lower mantle, the most voluminous layer of the ...
Abstract The two most abundant minerals in the Earth’s lower mantle are bridgmanite and ferropericla...
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...
High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite sol...
We present a density functional study of the pressure-induced spin transition in ferrous iron (Fe2+)...
Acoustic dissipation due to structural phase transitions in minerals could give rise to large seismi...
The iron spin crossover in ferropericlase, the second most abundant mineral in Earth's lower mantle,...