Overshooting and semiconvection are two poorly known mechanisms which affect the extent and the efficiency of chemical mixing outside classical convection zones in stars. We discuss the uncertainties and the inferences of those processes in main sequence stars burning hydrogen in a convective core. We then focus on the asteroseismic signatures of partially or fully mixed zones surrounding the convective core, through the detailed shape of the induced chemical composition profile. We emphasize the potential power of asteroseismology to determine the internal structure of stars and thus to help us understand the physical processes at work inside the stars
The term overshooting is used to describe two situations: the chemical mixing induced by the convect...
Aims: We investigate from a theoretical perspective if space asteroseismology can be used to disting...
Asteroseismology of non-radial pulsations in Hot B Subdwarfs (sdB stars) offers a unique view into t...
Abstract Overshooting and semiconvection are two poorly known mechanisms which affect the extent and...
peer reviewedChemical turbulent mixing induced by rotation can affect the internal distribution of μ...
We discuss the effects of convective overshooting in the PMS evolution of intermediate mass stars, b...
Convection is one of the major mixing processes in stars, and is crucial for understanding their str...
Convective boundary mixing (CBM) is ubiquitous in stellar evolution. It is a necessary ingredient in...
Context. The overall evolution of low-mass stars is heavily influenced by the processes occurring in...
Numerous observations provide evidence that the standard picture, in which convective mixing is limi...
Uncertainties on central mixing in main-sequence (MS) and core He-burning (He-B) phases affect key p...
KIC 10553698A is a hot pulsating subdwarf B (sdB) star observed by the Kepler satellite. It exhibits...
Context. The evolution of stars born with a convective core is highly dependent on the efficiency an...
Asteroseismology of non-radial pulsations in Hot B Subdwarfs (sdB stars) offers a unique view into t...
Asteroseismology of non-radial pulsations in Hot B Subdwarfs (sdB stars) offers a unique view into t...
The term overshooting is used to describe two situations: the chemical mixing induced by the convect...
Aims: We investigate from a theoretical perspective if space asteroseismology can be used to disting...
Asteroseismology of non-radial pulsations in Hot B Subdwarfs (sdB stars) offers a unique view into t...
Abstract Overshooting and semiconvection are two poorly known mechanisms which affect the extent and...
peer reviewedChemical turbulent mixing induced by rotation can affect the internal distribution of μ...
We discuss the effects of convective overshooting in the PMS evolution of intermediate mass stars, b...
Convection is one of the major mixing processes in stars, and is crucial for understanding their str...
Convective boundary mixing (CBM) is ubiquitous in stellar evolution. It is a necessary ingredient in...
Context. The overall evolution of low-mass stars is heavily influenced by the processes occurring in...
Numerous observations provide evidence that the standard picture, in which convective mixing is limi...
Uncertainties on central mixing in main-sequence (MS) and core He-burning (He-B) phases affect key p...
KIC 10553698A is a hot pulsating subdwarf B (sdB) star observed by the Kepler satellite. It exhibits...
Context. The evolution of stars born with a convective core is highly dependent on the efficiency an...
Asteroseismology of non-radial pulsations in Hot B Subdwarfs (sdB stars) offers a unique view into t...
Asteroseismology of non-radial pulsations in Hot B Subdwarfs (sdB stars) offers a unique view into t...
The term overshooting is used to describe two situations: the chemical mixing induced by the convect...
Aims: We investigate from a theoretical perspective if space asteroseismology can be used to disting...
Asteroseismology of non-radial pulsations in Hot B Subdwarfs (sdB stars) offers a unique view into t...