Warm Jupiters—defined here as planets larger than 6 Earth radii with orbital periods of 8–200 days—are a key missing piece in our understanding of how planetary systems form and evolve. It is currently debated whether Warm Jupiters form in situ, undergo disk or high-eccentricity tidal migration, or have a mixture of origin channels. These different classes of origin channels lead to different expectations for Warm Jupiters' properties, which are currently difficult to evaluate due to the small sample size. We take advantage of the Transiting Exoplanet Survey Satellite (TESS) survey and systematically search for Warm Jupiter candidates around main-sequence host stars brighter than the TESS-band magnitude of 12 in the full-frame images in Yea...
TOI-216 hosts a pair of warm, large exoplanets discovered by the TESS mission. These planets were fo...
Context. Hot Jupiters form an enigmatic class of object whose formation pathways are not yet clear. ...
Nearly all known exoplanets orbit stars later than spectral type A, and the few known planets orbiti...
Warm Jupiters-defined here as planets larger than 6 Earth radii with orbital periods of 8-200 days-a...
Warm Jupiters-defined here as planets larger than 6 Earth radii with orbital periods of 8-200 days-a...
Warm Jupiters provide the opportunity to better understand the formation and evolution of planetary ...
Warm Jupiters (WJs) – defined here as planets larger than 6 Earth radii with orbital periods 8–200 d...
The origin of warm Jupiters (gas giant planets with periods between 10 and 200 days) is an open ques...
We report the confirmation and mass determination of three hot Jupiters discovered by the Transiting...
International audienceContext. The detection and characterization of exoplanets and brown dwarfs aro...
Hot Jupiters - short-period giant planets - were the first extrasolar planets to be discovered, but ...
We confirm the planetary nature of a warm Jupiter transiting the early M dwarf TOI-1899 using a comb...
We report the confirmation and mass determination of three hot Jupiters discovered by the Transiting...
We report the confirmation and mass determination of three hot Jupiters discovered by the Transiting...
© 2020. The American Astronomical Society. All rights reserved. Hot Jupiters are rarely accompanied ...
TOI-216 hosts a pair of warm, large exoplanets discovered by the TESS mission. These planets were fo...
Context. Hot Jupiters form an enigmatic class of object whose formation pathways are not yet clear. ...
Nearly all known exoplanets orbit stars later than spectral type A, and the few known planets orbiti...
Warm Jupiters-defined here as planets larger than 6 Earth radii with orbital periods of 8-200 days-a...
Warm Jupiters-defined here as planets larger than 6 Earth radii with orbital periods of 8-200 days-a...
Warm Jupiters provide the opportunity to better understand the formation and evolution of planetary ...
Warm Jupiters (WJs) – defined here as planets larger than 6 Earth radii with orbital periods 8–200 d...
The origin of warm Jupiters (gas giant planets with periods between 10 and 200 days) is an open ques...
We report the confirmation and mass determination of three hot Jupiters discovered by the Transiting...
International audienceContext. The detection and characterization of exoplanets and brown dwarfs aro...
Hot Jupiters - short-period giant planets - were the first extrasolar planets to be discovered, but ...
We confirm the planetary nature of a warm Jupiter transiting the early M dwarf TOI-1899 using a comb...
We report the confirmation and mass determination of three hot Jupiters discovered by the Transiting...
We report the confirmation and mass determination of three hot Jupiters discovered by the Transiting...
© 2020. The American Astronomical Society. All rights reserved. Hot Jupiters are rarely accompanied ...
TOI-216 hosts a pair of warm, large exoplanets discovered by the TESS mission. These planets were fo...
Context. Hot Jupiters form an enigmatic class of object whose formation pathways are not yet clear. ...
Nearly all known exoplanets orbit stars later than spectral type A, and the few known planets orbiti...