The spin state of Fe(II) and Fe(III) at temperatures and pressures typical for the Earth's lower mantle is discussed. We predict an extended high-spin to low-spin crossover region along the geotherm for Fe-dilute systems depending on crystal-field splitting, pairing energy, and cooperative interactions. In particular, spin transitions in ferromagnesium silicate perovskite and ferropericlase, the dominant lower mantle components, should occur in a wide temperature-pressure range. We also derive a gradual volume change associated with such transitions in the lower mantle. The gradual density changes and the wide spin crossover regions seem incompatible with lower mantle stratification resulting from a spin transition
We used density functional theory (DFT) to examine the partitioning of ferrous iron between periclas...
The iron spin crossover in ferropericlase, the second most abundant mineral in Earth's lower mantle,...
Ferropericlase (fp), (Mg$_{1-x}$Fe$_x$)O, the second most abundant mineral in the Earth's lower mant...
The spin state of Fe(II) and Fe(III) at temperatures and pressures typical for the Earth's lower man...
Pressure-induced electronic spin-pairing transitions of iron and associated effects on the physical ...
International audienceMantle minerals at shallow depths contain iron in the high-spin electronic sta...
Mantle minerals at shallow depths contain iron in the high-spin electronic state. The crystal-field ...
Mineralogical models of the planet indicate that the lower mantle, the most voluminous layer of the ...
The effects of low-spin Fe^(2+) in the earth's lower mantle are investigated in considerable detail....
International audienceWe measured the spin state of iron in ferropericlase (Mg0.83Fe0.17)O at high p...
High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite sol...
The low/ultralow-velocity zones in the Earth\u27s mantle can be explained by the presence of partial...
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...
Iron in the major lower mantle (LM) minerals undergoes a high spin (HS) to low spin (LS) transition ...
We used density functional theory (DFT) to examine the partitioning of ferrous iron between periclas...
The iron spin crossover in ferropericlase, the second most abundant mineral in Earth's lower mantle,...
Ferropericlase (fp), (Mg$_{1-x}$Fe$_x$)O, the second most abundant mineral in the Earth's lower mant...
The spin state of Fe(II) and Fe(III) at temperatures and pressures typical for the Earth's lower man...
Pressure-induced electronic spin-pairing transitions of iron and associated effects on the physical ...
International audienceMantle minerals at shallow depths contain iron in the high-spin electronic sta...
Mantle minerals at shallow depths contain iron in the high-spin electronic state. The crystal-field ...
Mineralogical models of the planet indicate that the lower mantle, the most voluminous layer of the ...
The effects of low-spin Fe^(2+) in the earth's lower mantle are investigated in considerable detail....
International audienceWe measured the spin state of iron in ferropericlase (Mg0.83Fe0.17)O at high p...
High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite sol...
The low/ultralow-velocity zones in the Earth\u27s mantle can be explained by the presence of partial...
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...
Iron in the major lower mantle (LM) minerals undergoes a high spin (HS) to low spin (LS) transition ...
We used density functional theory (DFT) to examine the partitioning of ferrous iron between periclas...
The iron spin crossover in ferropericlase, the second most abundant mineral in Earth's lower mantle,...
Ferropericlase (fp), (Mg$_{1-x}$Fe$_x$)O, the second most abundant mineral in the Earth's lower mant...