International audienceThe increase in solar luminosity over geological timescales should warm the Earth's climate, increasing water evaporation, which will in turn enhance the atmospheric greenhouse effect. Above a certain critical insolation, this destabilizing greenhouse feedback can 'run away' until the oceans have completely evaporated. Through increases in stratospheric humidity, warming may also cause evaporative loss of the oceans to space before the runaway greenhouse state occurs. The critical insolation thresholds for these processes, however, remain uncertain because they have so far been evaluated using one-dimensional models that cannot account for the dynamical and cloud feedback effects that are key stabilizing features of th...
International audienceAs the insolation of an Earth-like (exo)planet with a large amount of water in...
International audienceThe inner edge of the classical habitable zone is often defined by the critica...
Terrestrial planet atmospheres must be in long-term radiation balance, with solar radiation absorbed...
International audienceThe increase in solar luminosity over geological timescales should warm the Ea...
A one-dimensional climate model is used to study the response of an Earth-like atmosphere to large i...
Even if their detection is for now challenging, observation of small terrestrial planets will be eas...
Planets similar to Earth but slightly more irradiated are expected to enter into a runaway greenhous...
Water-rich planets such as Earth are expected to become eventually uninhabitable, because liquid wat...
Aone-dimensional radiative–convective equilibriummodel is used to investigate the influence of cloud...
When a planet is in radiative equilibrium, the incoming solar flux balances the outgoing longwave fl...
Ongoing and future space missions aim to identify potentially habitable planets in our Solar System ...
The inner edge of the classical habitable zone is often defined by the critical flux needed to trigg...
Recent work has established that Venus once had at least 100 times its present complement of outgass...
Ongoing and future space missions aim to identify potentially habitable planets in our Solar System ...
The Habitable Zone (HZ) is generally defined as the orbital region around a star, in which life-supp...
International audienceAs the insolation of an Earth-like (exo)planet with a large amount of water in...
International audienceThe inner edge of the classical habitable zone is often defined by the critica...
Terrestrial planet atmospheres must be in long-term radiation balance, with solar radiation absorbed...
International audienceThe increase in solar luminosity over geological timescales should warm the Ea...
A one-dimensional climate model is used to study the response of an Earth-like atmosphere to large i...
Even if their detection is for now challenging, observation of small terrestrial planets will be eas...
Planets similar to Earth but slightly more irradiated are expected to enter into a runaway greenhous...
Water-rich planets such as Earth are expected to become eventually uninhabitable, because liquid wat...
Aone-dimensional radiative–convective equilibriummodel is used to investigate the influence of cloud...
When a planet is in radiative equilibrium, the incoming solar flux balances the outgoing longwave fl...
Ongoing and future space missions aim to identify potentially habitable planets in our Solar System ...
The inner edge of the classical habitable zone is often defined by the critical flux needed to trigg...
Recent work has established that Venus once had at least 100 times its present complement of outgass...
Ongoing and future space missions aim to identify potentially habitable planets in our Solar System ...
The Habitable Zone (HZ) is generally defined as the orbital region around a star, in which life-supp...
International audienceAs the insolation of an Earth-like (exo)planet with a large amount of water in...
International audienceThe inner edge of the classical habitable zone is often defined by the critica...
Terrestrial planet atmospheres must be in long-term radiation balance, with solar radiation absorbed...