International audienceThe magma ocean was a important reservoir for Earth's primary volatiles. Understanding the volatile fluxes between the early atmosphere and the magma ocean is fundamental for quantifying the volatile budget of our planet. Here we investigate the vaporization of carbon and hydrogen at the boundary between the magma ocean and the thick, hot early atmosphere using first-principles molecular dynamics calculations. We find that carbon is rapidly devolatilized, while hydrogen mostly remains dissolved in the magma during the existence of a thick silicate-bearing atmosphere. In the early stages of the magma ocean, the atmosphere would have contained significantly more carbon than hydrogen, and the high concentrations of carbon...
Current estimates of the carbon flux between the surface and mantle are highly variable, and the tot...
The earliest atmospheres of rocky planets originate from extensive volatile release during magma oce...
International audienceNitrogen, carbon, hydrogen and sulfur are essential elements for life and comp...
International audienceThe magma ocean was a important reservoir for Earth's primary volatiles. Under...
International audienceThe magma ocean was a important reservoir for Earth's primary volatiles. Under...
Under a thick atmosphere, carbon is rapidly vaporized from the magma ocean, while hydrogen remains d...
The early history of the Earth was characterized by a magma ocean stage. The principal aim of this r...
During the early phase of its evolution, the Earth was likely characterized by a magma ocean stage. ...
International audienceNitrogen, carbon, hydrogen and sulfur are essential elements for life constitu...
The magma ocean is an early stage in the terrestrial planet evolution attributed to energy delivery ...
Context. The magma ocean period was a critical phase determining how Earth’s atmosphere developed in...
The early phase of the Earth´s evolution was characterized by the presence of a magma ocean or sever...
International audienceCurrent estimates of the carbon flux between the surface and mantle are highly...
Current estimates of the carbon flux between the surface and mantle are highly variable, and the tot...
The earliest atmospheres of rocky planets originate from extensive volatile release during magma oce...
International audienceNitrogen, carbon, hydrogen and sulfur are essential elements for life and comp...
International audienceThe magma ocean was a important reservoir for Earth's primary volatiles. Under...
International audienceThe magma ocean was a important reservoir for Earth's primary volatiles. Under...
Under a thick atmosphere, carbon is rapidly vaporized from the magma ocean, while hydrogen remains d...
The early history of the Earth was characterized by a magma ocean stage. The principal aim of this r...
During the early phase of its evolution, the Earth was likely characterized by a magma ocean stage. ...
International audienceNitrogen, carbon, hydrogen and sulfur are essential elements for life constitu...
The magma ocean is an early stage in the terrestrial planet evolution attributed to energy delivery ...
Context. The magma ocean period was a critical phase determining how Earth’s atmosphere developed in...
The early phase of the Earth´s evolution was characterized by the presence of a magma ocean or sever...
International audienceCurrent estimates of the carbon flux between the surface and mantle are highly...
Current estimates of the carbon flux between the surface and mantle are highly variable, and the tot...
The earliest atmospheres of rocky planets originate from extensive volatile release during magma oce...
International audienceNitrogen, carbon, hydrogen and sulfur are essential elements for life and comp...