International audienceThe +0.1‰ elevated 56Fe/54Fe ratio of terrestrial basalts relative to chondrites was proposed to be a fingerprint of core-mantle segregation. However, the extent of iron isotopic fractionation between molten metal and silicate under high pressure–temperature conditions is poorly known. Here we show that iron forms chemical bonds of similar strengths in basaltic glasses and iron-rich alloys, even at high pressure. From the measured mean force constants of iron bonds, we calculate an equilibrium iron isotope fractionation between silicate and iron under core formation conditions in Earth of ∼0–0.02‰, which is small relative to the +0.1‰ shift of terrestrial basalts. This result is unaffected by small amounts of nickel an...
International audienceCrystallization of the Earth's inner core fractionates major and minor element...
Iron isotopic compositions measured in chondrules from various chondrites vary between δ ...
Iron isotopic compositions potentially provide a powerful new tracer of planetary formation and diff...
International audienceThe +0.1‰ elevated 56Fe/54Fe ratio of terrestrial basalts relative to chondrit...
Our current understanding of Earth's core formation is limited by the fact that this profound event ...
A series of high pressure and temperature experiments were conducted to better constrain the Fe isot...
International audienceThe Fe isotopic compositions of mantles of differentiated inner solar system b...
International audienceThe heavy iron isotopic composition of Earth's crust relative to chondrites ha...
Magmatic iron meteorites are considered to be remnants of the metallic cores of differentiated aster...
Available online 16 August 2016Iron is the only polyvalent major element, and controls reduction–oxi...
Central to understanding the processes that drive stable isotope fractionation in nature is their qu...
High-precision Fe isotopic data for 104 samples, including modern and ancient (≥ 3.7 Ga) subduction-...
The D” layer at the base of the Earth’s mantle exhibits anomalous seismic properties, which are attr...
The Earth's mantle is currently oxidised and out of chemical equilibrium with the core. The reasons ...
While extraterrestrial basalts have near-chondritic iron isotopic compositions (~0 ‰), mid-ocean ri...
International audienceCrystallization of the Earth's inner core fractionates major and minor element...
Iron isotopic compositions measured in chondrules from various chondrites vary between δ ...
Iron isotopic compositions potentially provide a powerful new tracer of planetary formation and diff...
International audienceThe +0.1‰ elevated 56Fe/54Fe ratio of terrestrial basalts relative to chondrit...
Our current understanding of Earth's core formation is limited by the fact that this profound event ...
A series of high pressure and temperature experiments were conducted to better constrain the Fe isot...
International audienceThe Fe isotopic compositions of mantles of differentiated inner solar system b...
International audienceThe heavy iron isotopic composition of Earth's crust relative to chondrites ha...
Magmatic iron meteorites are considered to be remnants of the metallic cores of differentiated aster...
Available online 16 August 2016Iron is the only polyvalent major element, and controls reduction–oxi...
Central to understanding the processes that drive stable isotope fractionation in nature is their qu...
High-precision Fe isotopic data for 104 samples, including modern and ancient (≥ 3.7 Ga) subduction-...
The D” layer at the base of the Earth’s mantle exhibits anomalous seismic properties, which are attr...
The Earth's mantle is currently oxidised and out of chemical equilibrium with the core. The reasons ...
While extraterrestrial basalts have near-chondritic iron isotopic compositions (~0 ‰), mid-ocean ri...
International audienceCrystallization of the Earth's inner core fractionates major and minor element...
Iron isotopic compositions measured in chondrules from various chondrites vary between δ ...
Iron isotopic compositions potentially provide a powerful new tracer of planetary formation and diff...