We report an experimental investigation of phase equilibria in the Fe-S and Fe-S-O systems. Experiments were performed at high temperatures (1400–1850°C) and high pressures (14 and 20 GPa) using a multi-anvil apparatus. The results of this study are used to understand the effect of sulfur and oxygen on core dynamics in small terrestrial bodies. We observe that the formation of solid FeO grains occurs at the Fe-S liquid – Fe solid interface at high temperature ( > 1400°C at 20 GPa). Oxygen fugacities calculated for each O-bearing sample show that redox conditions vary from ΔIW = −0.65 to 0. Considering the relative density of each phase and existing evolutionary models of terrestrial cores, we apply our experimental results to the cores of M...
High-pressure melting experiments in the Fe-S-C ternary and Fe-S-Si-C quaternary systems have been c...
We performed a series of experiments at 1 atm pressure and temperatures of 1300–1500 °C to determine...
Sulfur is a primary alloying element in Earth and planetary cores. Investigating iron-sulfide phase ...
We report an experimental investigation of phase equilibria in the Fe-S and Fe-S-O systems. Experime...
Recent experimental data concerning the properties of iron, iron sulfide, and iron oxide at high pre...
Recent studies have revealed that Earth's deep mantle may have a wider range of oxygen fugacities th...
International audienceCurrent Martian core composition models suggest an iron-rich core alloyed with...
The phase diagram of FeO was experimentally determined to pressures of 155 GPa and temperatures of 4...
Liquid-state and solid-state model fits to melting data for Fe, FeS and FeO provide constraints for ...
International audienceEutectic melting temperatures in the Fe–FeO and Fe–Fe3C systems have been dete...
Abstract The phase and melting relations in the Fe–S–Si system were determined up to 60 GPa by using...
Sulfur constitutes several wt% of chondrite meteorites, the accretion material of terrestrial planet...
International audienceThe Earth's core is constituted of iron and nickel alloyed with lighter elemen...
The standard model of Earth’s core evolution has the bulk composition set at formation, with slow co...
The Earth's core is about ten per cent less dense than pure iron (Fe), suggesting that it contains l...
High-pressure melting experiments in the Fe-S-C ternary and Fe-S-Si-C quaternary systems have been c...
We performed a series of experiments at 1 atm pressure and temperatures of 1300–1500 °C to determine...
Sulfur is a primary alloying element in Earth and planetary cores. Investigating iron-sulfide phase ...
We report an experimental investigation of phase equilibria in the Fe-S and Fe-S-O systems. Experime...
Recent experimental data concerning the properties of iron, iron sulfide, and iron oxide at high pre...
Recent studies have revealed that Earth's deep mantle may have a wider range of oxygen fugacities th...
International audienceCurrent Martian core composition models suggest an iron-rich core alloyed with...
The phase diagram of FeO was experimentally determined to pressures of 155 GPa and temperatures of 4...
Liquid-state and solid-state model fits to melting data for Fe, FeS and FeO provide constraints for ...
International audienceEutectic melting temperatures in the Fe–FeO and Fe–Fe3C systems have been dete...
Abstract The phase and melting relations in the Fe–S–Si system were determined up to 60 GPa by using...
Sulfur constitutes several wt% of chondrite meteorites, the accretion material of terrestrial planet...
International audienceThe Earth's core is constituted of iron and nickel alloyed with lighter elemen...
The standard model of Earth’s core evolution has the bulk composition set at formation, with slow co...
The Earth's core is about ten per cent less dense than pure iron (Fe), suggesting that it contains l...
High-pressure melting experiments in the Fe-S-C ternary and Fe-S-Si-C quaternary systems have been c...
We performed a series of experiments at 1 atm pressure and temperatures of 1300–1500 °C to determine...
Sulfur is a primary alloying element in Earth and planetary cores. Investigating iron-sulfide phase ...