Context. Young stars rotate well below break-up velocity, which is thought to result from the magnetic coupling with their accretion disk. Aims. We investigate the rotational evolution of young stars under the disk-locking hypothesis through Monte Carlo simulations. Methods. Our simulations included 280 000 stars, each of which was initially assigned a mass, a rotational period, and a mass accretion rate. The mass accretion rate depends on both mass and time, following power-law indices of 1.4 and −1.5, respectively. A mass-dependent accretion threshold was defined below which a star was considered as diskless, which resulted in a distribution of disk lifetimes that matches observations. Stars were evolved at constant angula...
Context. The rotation periods of young low-mass stars after disks have dissipated (≲-pagination10 My...
The high-energy radiation emitted by young stars can have a strong influence on their rotational evo...
The vast majority of stars are formed in clustered environments. However, to date, most rotational e...
Context. Young stars rotate well below break-up velocity, which is thought to result from the magnet...
International audienceContext. Very low-mass (VLM) stars and brown dwarfs (BDs) present a different ...
International audienceThe rotational evolution of a young stellar population can give informations a...
Context. Rotational evolution in young stars is described by pre–main sequence evolutionary tracks i...
Evolution of young stars' rotation is investigated by using evolutionary tracks considering conserva...
Context. Understanding the physical processes that dictate the angular momentum evolution of solar-t...
Context. The observed relationship between mass, age and rotation in open clusters shows the progres...
Context. Understanding the origin and evolution of stellar angular momentum is one of the ...
We review the current state of our knowledge concerning the rotation and angular momentum evolution ...
10 pagesInternational audienceStar-disk interaction is thought to drive the angular momentum evoluti...
Rotation periods are now available for ~500 pre-main-sequence (PMS) and recently arrived main-sequ...
The smallest molecular cores observed to date have at least ∼6 orders of magnitude greater angular m...
Context. The rotation periods of young low-mass stars after disks have dissipated (≲-pagination10 My...
The high-energy radiation emitted by young stars can have a strong influence on their rotational evo...
The vast majority of stars are formed in clustered environments. However, to date, most rotational e...
Context. Young stars rotate well below break-up velocity, which is thought to result from the magnet...
International audienceContext. Very low-mass (VLM) stars and brown dwarfs (BDs) present a different ...
International audienceThe rotational evolution of a young stellar population can give informations a...
Context. Rotational evolution in young stars is described by pre–main sequence evolutionary tracks i...
Evolution of young stars' rotation is investigated by using evolutionary tracks considering conserva...
Context. Understanding the physical processes that dictate the angular momentum evolution of solar-t...
Context. The observed relationship between mass, age and rotation in open clusters shows the progres...
Context. Understanding the origin and evolution of stellar angular momentum is one of the ...
We review the current state of our knowledge concerning the rotation and angular momentum evolution ...
10 pagesInternational audienceStar-disk interaction is thought to drive the angular momentum evoluti...
Rotation periods are now available for ~500 pre-main-sequence (PMS) and recently arrived main-sequ...
The smallest molecular cores observed to date have at least ∼6 orders of magnitude greater angular m...
Context. The rotation periods of young low-mass stars after disks have dissipated (≲-pagination10 My...
The high-energy radiation emitted by young stars can have a strong influence on their rotational evo...
The vast majority of stars are formed in clustered environments. However, to date, most rotational e...