We hypothesize that hot Jupiters with inflated sizes represent a separate planet formation channel, the merging of two low-mass stars. We show that the abundance and properties of W UMa stars and low mass detached binaries are consistent with their being possible progenitors. The degree of inflation of the transiting hot Jupiters correlates with their expected spiral-in life time by tidal dissipation, and this could indicate youth if the stellar dissipation parameter Q∗' is sufficiently low. Several Jupiter-mass planets can form in the massive compact disk formed in a merger event. Gravitational scattering between them can explain the high incidence of excentric, inclined, and retrograde orbits. If the population of inflated planets is inde...
It is well accepted that hot Jupiters and other short-period planets did not form in situ, as the te...
Although it is fairly established that Gravitational Instability (GI) should occur in the early phas...
Two formation scenarios have been proposed to explain the tight orbits of hot Jupiters. They could b...
We hypothesize that hot Jupiters with inflated sizes represent a separate planet formation channel, ...
We consider the origin of compact, short-period, Jupiter-mass planets. We propose that their diverse...
We consider the origin of compact, short-period, Jupiter-mass planets. We propose that their diverse...
International audienceThe detection of short period planets (hot Jupiters and their lower mass count...
It has been suggested that the occurrence rate of hot Jupiters (HJs) in open clusters might reach se...
Soon after the discovery of Jupiter-sized planets in extremely close orbits around Sun-like stars, i...
A young hot Jupiter might have been tidally inflated beyond its Roche radius when its orbit was bein...
International audienceMore than 150 Hot Jupiters with orbital periods less than 10 days have been de...
Hot Jupiters (HJs) are short period massive planets that must accumulate the majority of their mass ...
We compare evolutionary models for close-in exoplanets coupling irradiation and evaporation due resp...
Although it is fairly established that Gravitational Instability (GI) should occur in the early phas...
Many exoplanets have now been detected in orbits with ultra-short periods very close to the Roche li...
It is well accepted that hot Jupiters and other short-period planets did not form in situ, as the te...
Although it is fairly established that Gravitational Instability (GI) should occur in the early phas...
Two formation scenarios have been proposed to explain the tight orbits of hot Jupiters. They could b...
We hypothesize that hot Jupiters with inflated sizes represent a separate planet formation channel, ...
We consider the origin of compact, short-period, Jupiter-mass planets. We propose that their diverse...
We consider the origin of compact, short-period, Jupiter-mass planets. We propose that their diverse...
International audienceThe detection of short period planets (hot Jupiters and their lower mass count...
It has been suggested that the occurrence rate of hot Jupiters (HJs) in open clusters might reach se...
Soon after the discovery of Jupiter-sized planets in extremely close orbits around Sun-like stars, i...
A young hot Jupiter might have been tidally inflated beyond its Roche radius when its orbit was bein...
International audienceMore than 150 Hot Jupiters with orbital periods less than 10 days have been de...
Hot Jupiters (HJs) are short period massive planets that must accumulate the majority of their mass ...
We compare evolutionary models for close-in exoplanets coupling irradiation and evaporation due resp...
Although it is fairly established that Gravitational Instability (GI) should occur in the early phas...
Many exoplanets have now been detected in orbits with ultra-short periods very close to the Roche li...
It is well accepted that hot Jupiters and other short-period planets did not form in situ, as the te...
Although it is fairly established that Gravitational Instability (GI) should occur in the early phas...
Two formation scenarios have been proposed to explain the tight orbits of hot Jupiters. They could b...