Les étoiles de type solaire génèrent un champ magnétique dans leur enveloppe convective grâce à l'effet dynamo. De l'énergie magnétique est injectée dans leur atmosphère étendue, la couronne, qui est chauffée à quelques millions de Kelvin. Le gradient de pression entre la base de la couronne et le milieu interstellaire produit alors un vent de particules chargées responsable du freinage rotationnel de l'étoile sur la séquence principale. Après une première partie introduisant les concepts fondamentaux de la magnétohydrodynamique stellaire, cette thèse se consacre à l'influence du vent magnétisé sur la rotation stellaire et la couronne. À l'aide d'un ensemble de 60 simulations MHD axisymétriques, nous quantifions en premier lieu l'influence ...
The topic of the thesis is the role of planetary rotation in the global structure of the solar wind ...
Here, I review some recent works on magnetism of cool, main-sequence stars, their winds and potentia...
It has been more than a hundred years since we discovered that the Sun not only has a magnetic field...
Solar-like stars are believed to generate magnetic fields in their convective envelope through dynam...
Solar-like stars are believed to generate magnetic fields in their convective envelope through dynam...
La thèse porte sur le rôle de la rotation planétaire dans la structure globale de l'interaction vent...
Stars are quasi-spheres of self-gravitating, turbulent and rotating plasma. For solar-type stars, th...
This thesis aims at understanding the internal dynamics of solar-type stars and the origin of their ...
Depuis plus de cent ans, nous savons que le Soleil non seulement possède un champ magnétique, mais q...
Stellar astrophysics needs today new models of large-scale magnetic fields, which are observed throu...
The topic of the thesis is the part of planetary rotation in the global structure of the solar wind ...
Magnetic fields are known to be present in a wide variety of stars, from fully convective low-mass s...
The topic of the thesis is the role of planetary rotation in the global structure of the solar wind ...
Here, I review some recent works on magnetism of cool, main-sequence stars, their winds and potentia...
It has been more than a hundred years since we discovered that the Sun not only has a magnetic field...
Solar-like stars are believed to generate magnetic fields in their convective envelope through dynam...
Solar-like stars are believed to generate magnetic fields in their convective envelope through dynam...
La thèse porte sur le rôle de la rotation planétaire dans la structure globale de l'interaction vent...
Stars are quasi-spheres of self-gravitating, turbulent and rotating plasma. For solar-type stars, th...
This thesis aims at understanding the internal dynamics of solar-type stars and the origin of their ...
Depuis plus de cent ans, nous savons que le Soleil non seulement possède un champ magnétique, mais q...
Stellar astrophysics needs today new models of large-scale magnetic fields, which are observed throu...
The topic of the thesis is the part of planetary rotation in the global structure of the solar wind ...
Magnetic fields are known to be present in a wide variety of stars, from fully convective low-mass s...
The topic of the thesis is the role of planetary rotation in the global structure of the solar wind ...
Here, I review some recent works on magnetism of cool, main-sequence stars, their winds and potentia...
It has been more than a hundred years since we discovered that the Sun not only has a magnetic field...