International audienceStars may be understood as self-gravitating masses of a compressible fluid whose radiative cooling is compensated by nuclear reactions or gravitational contraction. The understanding of their time evolution requires the use of detailed models that account for a complex microphysics including that of opacities, equation of state and nuclear reactions. The present stellar models are essentially one-dimensional, namely spherically symmetric. However, the interpretation of recent data like the surface abundances of elements or the distribution of internal rotation have reached the limits of validity of one-dimensional models because of their very simplified representation of large-scale fluid flows. In this article, we des...
Rotation is a key ingredient in the theory of stellar structure and evolution. Until now, stellar ev...
Context. Very high precision seismic space missions such as CoRoT and Kepler provide the means of te...
International audienceThe understanding of the rotational evolution of early-type stars is deeply re...
International audienceWe present results for 2-dimensional models of rapidly rotating main sequence ...
International audienceRecent observational advances in the fields of asteroseismology and interferom...
Aims. This work aims at presenting the first two-dimensional models of an isolated rapidly rotating ...
Abstract. Two-dimensional models of rapidly rotating stars are already unavoidable for the interpret...
Two-dimensional models of rapidly rotating stars are already unavoidable for the interpretation of i...
Rotation greatly impacts stellar structure and evolution. Particularly, it is known to be responsibl...
In this lecture I present the way stars can be modeled in two dimensions and especially the fluid fl...
Contact. Rotation is a key ingredient in the theory of stellar structure and evolution. Until now, s...
International audienceAims.We show how to construct 2-dimensional models of rapidly rotating stars i...
A new two-dimensional (2D) non-perturbative method to compute accurate oscillation modes of rapidly ...
Context. Very high precision seismic space missions such as CoRoT and Kepler provide the means of te...
International audienceContext: Recent results from interferometry and asteroseismology require model...
Rotation is a key ingredient in the theory of stellar structure and evolution. Until now, stellar ev...
Context. Very high precision seismic space missions such as CoRoT and Kepler provide the means of te...
International audienceThe understanding of the rotational evolution of early-type stars is deeply re...
International audienceWe present results for 2-dimensional models of rapidly rotating main sequence ...
International audienceRecent observational advances in the fields of asteroseismology and interferom...
Aims. This work aims at presenting the first two-dimensional models of an isolated rapidly rotating ...
Abstract. Two-dimensional models of rapidly rotating stars are already unavoidable for the interpret...
Two-dimensional models of rapidly rotating stars are already unavoidable for the interpretation of i...
Rotation greatly impacts stellar structure and evolution. Particularly, it is known to be responsibl...
In this lecture I present the way stars can be modeled in two dimensions and especially the fluid fl...
Contact. Rotation is a key ingredient in the theory of stellar structure and evolution. Until now, s...
International audienceAims.We show how to construct 2-dimensional models of rapidly rotating stars i...
A new two-dimensional (2D) non-perturbative method to compute accurate oscillation modes of rapidly ...
Context. Very high precision seismic space missions such as CoRoT and Kepler provide the means of te...
International audienceContext: Recent results from interferometry and asteroseismology require model...
Rotation is a key ingredient in the theory of stellar structure and evolution. Until now, stellar ev...
Context. Very high precision seismic space missions such as CoRoT and Kepler provide the means of te...
International audienceThe understanding of the rotational evolution of early-type stars is deeply re...