International audienceContext. Very low-mass (VLM) stars and brown dwarfs (BDs) present a different rotational behaviour from their solar mass counterparts.Aims. We investigate the rotational evolution of young VLM stars and BDs using Monte Carlo simulations under the hypothesis of disk locking and stellar angular momentum conservation.Methods. We built a set of objects with masses ranging from 0.01 M⊙ to 0.4 M⊙ and considered models with single- and double-peaked initial period distributions with and without disk locking. An object is considered to be diskless when its mass accretion rate is below a given threshold.Results. Models with initial single-peaked period distributions reproduce the observations well given that BDs rotate faster t...
Variability studies are an important tool to investigate key properties of stars and brown dwarfs. F...
Context. Understanding the physical processes that dictate the angular momentum evolution of solar-t...
While brown dwarfs show similarities to stars early in their lives, their spin evolutions are much m...
International audienceContext. Very low-mass (VLM) stars and brown dwarfs (BDs) present a different ...
Context. Young stars rotate well below break-up velocity, which is thought to result from the magnet...
The regulation of angular momentum is one of the key processes for our understanding of stellar evol...
We review the current state of our knowledge concerning the rotation and angular momentum evolution ...
We review the current state of our knowledge concerning the rotation and angular momentum evolution ...
International audienceThe rotational evolution of a young stellar population can give informations a...
We use Kepler/K2 light curves to measure rotation periods of brown dwarfs and very low mass stars in...
We explore the rotation and activity of very low mass (VLM) objects by means of a photometric varia...
Aims. Rotational studies at a variety of ages and masses are important for constraining the angular ...
Aims. Rotational studies at a variety of ages and masses are important for constraining the angular ...
The vast majority of stars are formed in clustered environments. However, to date, most rotational e...
Book chapter published in Protostars & Planets VI (2014) eds. H. Beuther, R. Klessen, K. Dullemond, ...
Variability studies are an important tool to investigate key properties of stars and brown dwarfs. F...
Context. Understanding the physical processes that dictate the angular momentum evolution of solar-t...
While brown dwarfs show similarities to stars early in their lives, their spin evolutions are much m...
International audienceContext. Very low-mass (VLM) stars and brown dwarfs (BDs) present a different ...
Context. Young stars rotate well below break-up velocity, which is thought to result from the magnet...
The regulation of angular momentum is one of the key processes for our understanding of stellar evol...
We review the current state of our knowledge concerning the rotation and angular momentum evolution ...
We review the current state of our knowledge concerning the rotation and angular momentum evolution ...
International audienceThe rotational evolution of a young stellar population can give informations a...
We use Kepler/K2 light curves to measure rotation periods of brown dwarfs and very low mass stars in...
We explore the rotation and activity of very low mass (VLM) objects by means of a photometric varia...
Aims. Rotational studies at a variety of ages and masses are important for constraining the angular ...
Aims. Rotational studies at a variety of ages and masses are important for constraining the angular ...
The vast majority of stars are formed in clustered environments. However, to date, most rotational e...
Book chapter published in Protostars & Planets VI (2014) eds. H. Beuther, R. Klessen, K. Dullemond, ...
Variability studies are an important tool to investigate key properties of stars and brown dwarfs. F...
Context. Understanding the physical processes that dictate the angular momentum evolution of solar-t...
While brown dwarfs show similarities to stars early in their lives, their spin evolutions are much m...