This thesis aims at understanding the internal dynamics of solar-type stars and the origin of their magnetism. We will explore the complex nonlinear interactions between convection, rotation and magnetism conducting both 2D (STELEM code) and 3D (ASH code) numerical simulations. This dual approach will unveil the mechanisms and key parameters behind those physical processes. While the Sun has played a central role in previous studies, this work extends our knowledge to G and K stars. This manuscript is divided into 4 parts. The first one introduces the concepts behind internal stellar dynamics, and emphasizes the dynamo effect. Accurate observations of the Sun will be compared to stellar data, allowing us to determine what is specific to the...
We use the anelastic spherical harmonic code to model the convective dynamo of solar-type stars. Bas...
It has been more than a hundred years since we discovered that the Sun not only has a magnetic field...
The objective of this thesis is to investigate the generation of astrophysical magnetic fields via t...
This thesis aims at understanding the internal dynamics of solar-type stars and the origin of their ...
Stars are quasi-spheres of self-gravitating, turbulent and rotating plasma. For solar-type stars, th...
This thesis is part of the general study of dynamical processes involved in stars such as convection...
Les étoiles de type solaire génèrent un champ magnétique dans leur enveloppe convective grâce à l'ef...
8 pages, 3 figures; to appear in proceedings of Cool Stars 16, Seattle Aug 29 - Sep 2, 2010Young sol...
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...
Copyright © 2011 American Astronomical Society / IOP PublishingYoung solar-type stars rotate rapidly...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
Core convection and dynamo activity deep within rotating A-type stars of 2 solar masses are studied ...
Contact between numerical simulations and observations of stellar magnetism is sought, with an empha...
Magnetic fields are known to be present in a wide variety of stars, from fully convective low-mass s...
We use the anelastic spherical harmonic code to model the convective dynamo of solar-type stars. Bas...
It has been more than a hundred years since we discovered that the Sun not only has a magnetic field...
The objective of this thesis is to investigate the generation of astrophysical magnetic fields via t...
This thesis aims at understanding the internal dynamics of solar-type stars and the origin of their ...
Stars are quasi-spheres of self-gravitating, turbulent and rotating plasma. For solar-type stars, th...
This thesis is part of the general study of dynamical processes involved in stars such as convection...
Les étoiles de type solaire génèrent un champ magnétique dans leur enveloppe convective grâce à l'ef...
8 pages, 3 figures; to appear in proceedings of Cool Stars 16, Seattle Aug 29 - Sep 2, 2010Young sol...
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...
Copyright © 2011 American Astronomical Society / IOP PublishingYoung solar-type stars rotate rapidly...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
Core convection and dynamo activity deep within rotating A-type stars of 2 solar masses are studied ...
Contact between numerical simulations and observations of stellar magnetism is sought, with an empha...
Magnetic fields are known to be present in a wide variety of stars, from fully convective low-mass s...
We use the anelastic spherical harmonic code to model the convective dynamo of solar-type stars. Bas...
It has been more than a hundred years since we discovered that the Sun not only has a magnetic field...
The objective of this thesis is to investigate the generation of astrophysical magnetic fields via t...