Context. Observations of solar-like oscillations obtained either from the ground or from space stimulated the study of the effects of various physical processes on the modelling of solar-type stars. Aims: The influence of rotational mixing on the evolution and asteroseismic properties of solar-type stars is studied. Methods: Global and asteroseismic properties of models of solar-type stars computed with and without a comprehensive treatment of shellular rotation are compared. The effects of internal magnetic fields are also discussed in the framework of the Tayler-Spruit dynamo. Results: Rotational mixing changes the global properties of a solar-type star with a significant increase of the effective temperature resulting in a shift of th...
Aims. Many topical astrophysical research areas, such as the properties of planet host stars, the na...
Rotation is ubiquitous at each step of stellar evolution, from star formation to the final stages, a...
Rotation has a number of important effects on the evolution of stars. It decreases the surface gravi...
International audienceContext. Observations of solar-like oscillations obtained either from the grou...
The effects of shellular rotation on the modelling of solar-type stars (in particular internal struc...
Context. The recent observations of solar-like oscillations in many red giant stars with the CoRoT s...
Context. The recent observations of solar-like oscillations in many red giant stars with the CoRoT s...
One of the main sources of uncertainty in the asteroseismic models of the Sun and solar-like stars i...
Thermohaline mixing has been recently identified as the probable dominating process that governs the...
International audienceContext. Understanding the angular momentum evolution of stars is one of the g...
The study of stars forms the basis of many research fields in astrophysics, from exoplanet systems t...
One of the main sources of uncertainty in the asteroseismic models of solar-like stars is the poor m...
Contrary to what is assumed in building standard stellar models, all stars undergo some mild mixing...
Models of rotating single stars can successfully account for a wide variety of observed stellar phen...
Aims. Many topical astrophysical research areas, such as the properties of planet host stars, the na...
Rotation is ubiquitous at each step of stellar evolution, from star formation to the final stages, a...
Rotation has a number of important effects on the evolution of stars. It decreases the surface gravi...
International audienceContext. Observations of solar-like oscillations obtained either from the grou...
The effects of shellular rotation on the modelling of solar-type stars (in particular internal struc...
Context. The recent observations of solar-like oscillations in many red giant stars with the CoRoT s...
Context. The recent observations of solar-like oscillations in many red giant stars with the CoRoT s...
One of the main sources of uncertainty in the asteroseismic models of the Sun and solar-like stars i...
Thermohaline mixing has been recently identified as the probable dominating process that governs the...
International audienceContext. Understanding the angular momentum evolution of stars is one of the g...
The study of stars forms the basis of many research fields in astrophysics, from exoplanet systems t...
One of the main sources of uncertainty in the asteroseismic models of solar-like stars is the poor m...
Contrary to what is assumed in building standard stellar models, all stars undergo some mild mixing...
Models of rotating single stars can successfully account for a wide variety of observed stellar phen...
Aims. Many topical astrophysical research areas, such as the properties of planet host stars, the na...
Rotation is ubiquitous at each step of stellar evolution, from star formation to the final stages, a...
Rotation has a number of important effects on the evolution of stars. It decreases the surface gravi...