High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite solid solution confirms that ferrous iron (Fe²⁺) undergoes a high-spin to low-spin transition at pressures and for compositions relevant to the bulk of the Earth's mantle. High-resolution x-ray diffraction measurements document a volume change of 4-5% across the pressure-induced spin transition, which is thus expected to cause seismological anomalies in the lower mantle. The spin transition can lead to dissociation of Fe-bearing phases such as magnesiowüstite, and it reveals an unexpected richness in mineral properties and phase equilibria for the Earth's deep interior.5 page(s
Iron-bearing periclase is thought to represent a significant fraction of Earth’s lower mantle. Howev...
The spin state of Fe(II) and Fe(III) at temperatures and pressures typical for the Earth's lower man...
The spin state of Fe(II) and Fe(III) at temperatures and pressures typical for the Earth's lower man...
High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite sol...
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 ...
High-pressure x-ray diffraction of (Mg0.80 Fe0.20)O at room temperature reveals a discontinuity in t...
Changes in the electronic configuration of iron at high pressures toward a spin-paired state within ...
High-pressure x-ray diffraction of (Mg{sub 0.8}Fe{sub 0.2})O at room temperature reveals a discontin...
High-pressure x-ray diffraction of (Mg0.80 Fe0.20)O at room temperature reveals a discontinuity in t...
Changes in the electronic configuration of iron at high pressures toward a spin-paired state within ...
International audienceWe measured the spin state of iron in ferropericlase (Mg0.83Fe0.17)O at high p...
Hydrous magnesium silicate phase D plays a key role in the transport of water from the upper to the ...
Iron-bearing periclase is thought to represent a significant fraction of Earth’s lower mantle. Howev...
Iron-bearing periclase is thought to represent a significant fraction of Earth’s lower mantle. Howev...
Iron-bearing periclase is thought to represent a significant fraction of Earth’s lower mantle. Howev...
The spin state of Fe(II) and Fe(III) at temperatures and pressures typical for the Earth's lower man...
The spin state of Fe(II) and Fe(III) at temperatures and pressures typical for the Earth's lower man...
High-pressure Mössbauer spectroscopy on several compositions across the (Mg,Fe)O magnesiowüstite sol...
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 ...
High-pressure x-ray diffraction of (Mg0.80 Fe0.20)O at room temperature reveals a discontinuity in t...
Changes in the electronic configuration of iron at high pressures toward a spin-paired state within ...
High-pressure x-ray diffraction of (Mg{sub 0.8}Fe{sub 0.2})O at room temperature reveals a discontin...
High-pressure x-ray diffraction of (Mg0.80 Fe0.20)O at room temperature reveals a discontinuity in t...
Changes in the electronic configuration of iron at high pressures toward a spin-paired state within ...
International audienceWe measured the spin state of iron in ferropericlase (Mg0.83Fe0.17)O at high p...
Hydrous magnesium silicate phase D plays a key role in the transport of water from the upper to the ...
Iron-bearing periclase is thought to represent a significant fraction of Earth’s lower mantle. Howev...
Iron-bearing periclase is thought to represent a significant fraction of Earth’s lower mantle. Howev...
Iron-bearing periclase is thought to represent a significant fraction of Earth’s lower mantle. Howev...
The spin state of Fe(II) and Fe(III) at temperatures and pressures typical for the Earth's lower man...
The spin state of Fe(II) and Fe(III) at temperatures and pressures typical for the Earth's lower man...