The existence of hot Jupiters has challenged theories of planetary formation since the first extrasolar planets were detected. Giant planets are generally believed to form far from their host stars, where volatile materials like water exist in their solid phase, making it easier for giant planet cores to accumulate. Several mechanisms have been proposed to explain how giant planets can migrate inward from their birth sites to short-period orbits. One such mechanism, called Kozai–Lidov migration, requires the presence of distant companions in orbits inclined by more than ~40° with respect to the plane of the hot Jupiter's orbit. The high occurrence rate of wide companions in hot-Jupiter systems lends support to this theory for migration. How...
mass close-in planets, despite the latter being exceedingly common. Two migration channels for hot J...
In this paper we search for distant massive companions to known transiting hot Jupiters that may hav...
Observations of exoplanets over the last two decades have revealed a new class of Jupiter-size plane...
The existence of hot Jupiters has challenged theories of planetary formation since the first extraso...
Stellar companions can influence the formation and evolution of planetary systems, but there are cur...
Hot Jupiters (giant planets with orbital periods less than 10 days) and warm Jupiters (giant planets...
The origin of Jupiter-mass planets with orbital periods of only a few days is still uncertain. It is...
Stellar companions can influence the formation and evolution of planetary systems, but there are cur...
Soon after the discovery of Jupiter-sized planets in extremely close orbits around Sun-like stars, i...
The origin of warm Jupiters (gas giant planets with periods between 10 and 200 days) is an open ques...
International audienceMore than 150 Hot Jupiters with orbital periods less than 10 days have been de...
Multi-star systems are common, yet little is known about a stellar companion's influence on the form...
This is the final version of the article. Available from American Astronomical Society / IOP Publish...
We propose a stringent observational test on the formation of warm Jupiters (gas-giant planets with ...
Gas giant planets orbiting within 0.1 AU of their host stars are unlikely to have formed in situ and...
mass close-in planets, despite the latter being exceedingly common. Two migration channels for hot J...
In this paper we search for distant massive companions to known transiting hot Jupiters that may hav...
Observations of exoplanets over the last two decades have revealed a new class of Jupiter-size plane...
The existence of hot Jupiters has challenged theories of planetary formation since the first extraso...
Stellar companions can influence the formation and evolution of planetary systems, but there are cur...
Hot Jupiters (giant planets with orbital periods less than 10 days) and warm Jupiters (giant planets...
The origin of Jupiter-mass planets with orbital periods of only a few days is still uncertain. It is...
Stellar companions can influence the formation and evolution of planetary systems, but there are cur...
Soon after the discovery of Jupiter-sized planets in extremely close orbits around Sun-like stars, i...
The origin of warm Jupiters (gas giant planets with periods between 10 and 200 days) is an open ques...
International audienceMore than 150 Hot Jupiters with orbital periods less than 10 days have been de...
Multi-star systems are common, yet little is known about a stellar companion's influence on the form...
This is the final version of the article. Available from American Astronomical Society / IOP Publish...
We propose a stringent observational test on the formation of warm Jupiters (gas-giant planets with ...
Gas giant planets orbiting within 0.1 AU of their host stars are unlikely to have formed in situ and...
mass close-in planets, despite the latter being exceedingly common. Two migration channels for hot J...
In this paper we search for distant massive companions to known transiting hot Jupiters that may hav...
Observations of exoplanets over the last two decades have revealed a new class of Jupiter-size plane...