Aims. The long-term carbon cycle for planets with a surface entirely covered by oceans works differently from that of the present-day Earth because inefficient erosion leads to a strong dependence of the weathering rate on the rate of volcanism. In this paper, we investigate the long-term carbon cycle for these planets throughout their evolution. Methods. We built box models of the long-term carbon cycle based on CO2 degassing, seafloor-weathering, metamorphic decarbonation, and ingassing and coupled them with thermal evolution models of plate tectonics and stagnant-lid planets. Results. The assumed relationship between the seafloor-weathering rate and the atmospheric CO2 or the surface temperature strongly influences the climate evolutio...
International audienceOcean planets are volatile-rich planets, not present in our Solar system, whic...
International audienceOcean planets are volatile-rich planets, not present in our Solar system, whic...
International audienceOcean planets are volatile-rich planets, not present in our Solar system, whic...
Aims. The long-term carbon cycle for planets with a surface entirely covered by oceans works differe...
Aims. The long-term carbon cycle for planets with a surface entirely covered by oceans works differe...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth’s ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
As the number of detected rocky extrasolar planets increases, the question of whether their surfaces...
As the number of detected rocky extrasolar planets increases, the question of whether their surfaces...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
The potential habitability of an exoplanet is traditionally assessed by determining whether its orbi...
International audienceOcean planets are volatile-rich planets, not present in our Solar system, whic...
International audienceOcean planets are volatile-rich planets, not present in our Solar system, whic...
International audienceOcean planets are volatile-rich planets, not present in our Solar system, whic...
Aims. The long-term carbon cycle for planets with a surface entirely covered by oceans works differe...
Aims. The long-term carbon cycle for planets with a surface entirely covered by oceans works differe...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth’s ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
As the number of detected rocky extrasolar planets increases, the question of whether their surfaces...
As the number of detected rocky extrasolar planets increases, the question of whether their surfaces...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
Context. The long-term carbonate silicate cycle plays an important role in the evolution of Earth's ...
The potential habitability of an exoplanet is traditionally assessed by determining whether its orbi...
International audienceOcean planets are volatile-rich planets, not present in our Solar system, whic...
International audienceOcean planets are volatile-rich planets, not present in our Solar system, whic...
International audienceOcean planets are volatile-rich planets, not present in our Solar system, whic...