It has been more than a hundred years since we discovered that the Sun not only has a magnetic field, but that it displays intense activity evolving according to an eleven-year cycle. This field is most certainly originated by a fluid dynamo inside the star. Although the evolution of the dynamo field is purely internal to the star, this field crosses the star's surface to influence the corona and interact with the solar wind, which is a continuous flow of charged particles that reaches the Earth. This interaction is yet not well characterized and very difficult to model due to the disparity of space and time scales and the diversity of physical mechanisms at stake (plasma regime change, turbulence, heating...). However this coupling between...
Solar activity manifests itself through highly dynamical events, such as flares and coronal mass eje...
Interplanetary Coronal Mass Ejections (ICMEs) originate from the eruption of complex magnetic struct...
Heat transport in the solar corona and wind, which is not completely understood, plays a key role in...
It has been more than a hundred years since we discovered that the Sun not only has a magnetic field...
Depuis plus de cent ans, nous savons que le Soleil non seulement possède un champ magnétique, mais q...
Stars are quasi-spheres of self-gravitating, turbulent and rotating plasma. For solar-type stars, th...
Les étoiles de type solaire génèrent un champ magnétique dans leur enveloppe convective grâce à l'ef...
This thesis is part of the general study of dynamical processes involved in stars such as convection...
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...
Plasmas are ubiquitous in the universe where most matter is in such a state, constituting stars, the...
This thesis aims at understanding the internal dynamics of solar-type stars and the origin of their ...
Magnetic clouds are huge structures released from the Sun through violent eruptions, which then prop...
The objective of this thesis is to investigate the generation of astrophysical magnetic fields via t...
Solar activity manifests itself through highly dynamical events, such as flares and coronal mass eje...
Interplanetary Coronal Mass Ejections (ICMEs) originate from the eruption of complex magnetic struct...
Heat transport in the solar corona and wind, which is not completely understood, plays a key role in...
It has been more than a hundred years since we discovered that the Sun not only has a magnetic field...
Depuis plus de cent ans, nous savons que le Soleil non seulement possède un champ magnétique, mais q...
Stars are quasi-spheres of self-gravitating, turbulent and rotating plasma. For solar-type stars, th...
Les étoiles de type solaire génèrent un champ magnétique dans leur enveloppe convective grâce à l'ef...
This thesis is part of the general study of dynamical processes involved in stars such as convection...
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...
Plasmas are ubiquitous in the universe where most matter is in such a state, constituting stars, the...
This thesis aims at understanding the internal dynamics of solar-type stars and the origin of their ...
Magnetic clouds are huge structures released from the Sun through violent eruptions, which then prop...
The objective of this thesis is to investigate the generation of astrophysical magnetic fields via t...
Solar activity manifests itself through highly dynamical events, such as flares and coronal mass eje...
Interplanetary Coronal Mass Ejections (ICMEs) originate from the eruption of complex magnetic struct...
Heat transport in the solar corona and wind, which is not completely understood, plays a key role in...