Based on numerical results from density-functional perturbation theory calculations, we show that the magnetic spin transition in Fe2+-rich MgSiO3 perovskite can be identified as changes in the powder X-ray diffraction (XRD) pattern and the vibrational spectra. In particular theory predicts how the symmetry breaking and the volume reduction associated with the spin transition affects both structural and vibrational properties. The XRD measurements of (Mg0.5Fe0.3)SiO3 perovskite indeed demonstrated that the new diffraction peaks and the peak broadening formed during the spin transition can be explained by the associated symmetry breaking. We also show computationally that certain vibrational peaks exhibit a shift at the transition; the Grune...
aBStract Spin transitions in (Mg,Fe)SiO3 bridgmanite have important implications for the chemistry a...
The most abundant mineral on Earth has a perovskite crystal structure and a chemistry that is domina...
The electronic environment of the Fe nuclei in two silicate perovskite samples, Fe_(0.05)Mg_(0.95)Si...
Based on numerical results from density-functional perturbation theory calculations, we show that th...
We present a density functional study of the pressure-induced spin transition in ferrous iron (Fe2+)...
Using density functional theory plus Hubbard U calculations, we show that the ground state of (Mg, F...
Using density functional theory + Hubbard U (DFT + U) calculations, we investigate the spin states a...
International audienceWe extend the field of investigation of the perovskite to post-perovskite phas...
International audienceWe extend the field of investigation of the perovskite to post-perovskite phas...
A high-pressure phase transition in iron free MgSiO3 perovskite, the most abundant Earth forming min...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
We show by electron spin resonance (ESR) and Raman spectroscopies that the crystal phase transition ...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
International audienceSpin transitions in (Mg,Fe)SiO3 bridgmanite have important implications for th...
aBStract Spin transitions in (Mg,Fe)SiO3 bridgmanite have important implications for the chemistry a...
The most abundant mineral on Earth has a perovskite crystal structure and a chemistry that is domina...
The electronic environment of the Fe nuclei in two silicate perovskite samples, Fe_(0.05)Mg_(0.95)Si...
Based on numerical results from density-functional perturbation theory calculations, we show that th...
We present a density functional study of the pressure-induced spin transition in ferrous iron (Fe2+)...
Using density functional theory plus Hubbard U calculations, we show that the ground state of (Mg, F...
Using density functional theory + Hubbard U (DFT + U) calculations, we investigate the spin states a...
International audienceWe extend the field of investigation of the perovskite to post-perovskite phas...
International audienceWe extend the field of investigation of the perovskite to post-perovskite phas...
A high-pressure phase transition in iron free MgSiO3 perovskite, the most abundant Earth forming min...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
We show by electron spin resonance (ESR) and Raman spectroscopies that the crystal phase transition ...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
International audienceWe determine the elasticity of FeSiO3 perovskite for various spin configuratio...
International audienceSpin transitions in (Mg,Fe)SiO3 bridgmanite have important implications for th...
aBStract Spin transitions in (Mg,Fe)SiO3 bridgmanite have important implications for the chemistry a...
The most abundant mineral on Earth has a perovskite crystal structure and a chemistry that is domina...
The electronic environment of the Fe nuclei in two silicate perovskite samples, Fe_(0.05)Mg_(0.95)Si...