Planets around young stars trace the early evolution of planetary systems. We report the discovery and validation of two planetary systems with ages $\lesssim 300$ Myr from observations by the Transiting Exoplanet Survey Satellite. TOI-251 is a 40-320 Myr old G star hosting a 2.74 +0.18/-0.18 REarth mini-Neptune with a 4.94 day period. TOI-942 is a 20-160 Myr old K star hosting a system of inflated Neptune-sized planets, with TOI-942b orbiting with a period of 4.32 days, with a radius of 4.81 +0.20/-0.20 REarth, and TOI-942c orbiting in a period of 10.16 days with a radius of 5.79 +0.19/-0.18 REarth. Though we cannot place either host star into a known stellar association or cluster, we can estimate their ages via their photometric...
Context. Young stars and multi-planet systems are two types of primary objects that allow us to stud...
Young exoplanets can offer insight into the evolution of planetary atmospheres, compositions, and ar...
© 2020. The American Astronomical Society. All rights reserved. Exoplanets can evolve significantly ...
Planets around young stars trace the early evolution of planetary systems. We report the discovery a...
Planets around young stars trace the early evolution of planetary systems. We report the discovery a...
Planets around young stars trace the early evolution of planetary systems. We report the discovery a...
We report the discovery of two planetary systems around comoving stars: TOI-2076 (TIC 27491137) and ...
We report the discovery of two planetary systems around comoving stars: TOI-2076 (TIC 27491137) and ...
A wealth of models to explain the early evolution of planetary systems have emerged following the di...
© 2021. The American Astronomical Society. All rights reserved. The detection and characterization o...
The detection and characterization of young planetary systems offer a direct path to study the proce...
A wealth of models to explain the early evolution of planetary systems have emerged following the di...
International audienceContext. Young stars and multi-planet systems are two types of primary objects...
The detection and characterization of young planetary systems offer a direct path to study the proce...
Context. Young stars and multi-planet systems are two types of primary objects that allow us to stud...
Young exoplanets can offer insight into the evolution of planetary atmospheres, compositions, and ar...
© 2020. The American Astronomical Society. All rights reserved. Exoplanets can evolve significantly ...
Planets around young stars trace the early evolution of planetary systems. We report the discovery a...
Planets around young stars trace the early evolution of planetary systems. We report the discovery a...
Planets around young stars trace the early evolution of planetary systems. We report the discovery a...
We report the discovery of two planetary systems around comoving stars: TOI-2076 (TIC 27491137) and ...
We report the discovery of two planetary systems around comoving stars: TOI-2076 (TIC 27491137) and ...
A wealth of models to explain the early evolution of planetary systems have emerged following the di...
© 2021. The American Astronomical Society. All rights reserved. The detection and characterization o...
The detection and characterization of young planetary systems offer a direct path to study the proce...
A wealth of models to explain the early evolution of planetary systems have emerged following the di...
International audienceContext. Young stars and multi-planet systems are two types of primary objects...
The detection and characterization of young planetary systems offer a direct path to study the proce...
Context. Young stars and multi-planet systems are two types of primary objects that allow us to stud...
Young exoplanets can offer insight into the evolution of planetary atmospheres, compositions, and ar...
© 2020. The American Astronomical Society. All rights reserved. Exoplanets can evolve significantly ...