This paper provides a brief overview of the formation of stellar fossil magnetic fields and what potential instabilities may occur given certain configurations of the magnetic field. One such instability is the purely magnetic Tayler instability, which can occur for poloidal, toroidal, and mixed poloidal-toroidal axisymmetric magnetic field configurations. However, most of the magnetic field configurations observed at the surface of massive stars are non-axisymmetric. Thus, extending earlier studies in spherical geometry, we introduce a formulation for the global change in the potential energy contained in a convectively-stable region for both axisymmetric and non-axisymmetric magnetic fields
We further develop the Tayler--Spruit dynamo theory, based on the most efficient instability for gen...
We further develop the Tayler-Spruit dynamo theory, based on the most efficient instability for ge...
We investigate the 50-year old hypothesis that the magnetic fields of the Ap stars are stable equili...
This paper provides a brief overview of the formation of stellar fossil magnetic fields and what pot...
Aims. Magnetic fields play an important role during the formation and evolution of stars. Of particu...
Context.We examine the MHD instabilities arising in the radiation zone of a differentially rotating ...
The stability of the magnetic field in radiation zones is of crucial importance for mixing and angul...
Context. The question of the origin and evolution of magnetic fields in stars possessing a radiative...
The stability of large-scale magnetic fields in rotating stars is explored, using 3D numerical hydro...
Abstract—The stability of a toroidal magnetic field in the rotating radiation zone of a star is anal...
International audienceContext: We examine the MHD instabilities arising in the radiation zone of a d...
The magnetic field in stellar radiation zones can play an important role in phenomena such...
Aims.Two questions are addressed as to how strong magnetic fields can be stored in rotating stellar ...
International audienceContext. The interactions between magnetic fields and differential rotation in...
The questions of how strong magnetic fields can be stored in rotating stellar radiative zones withou...
We further develop the Tayler--Spruit dynamo theory, based on the most efficient instability for gen...
We further develop the Tayler-Spruit dynamo theory, based on the most efficient instability for ge...
We investigate the 50-year old hypothesis that the magnetic fields of the Ap stars are stable equili...
This paper provides a brief overview of the formation of stellar fossil magnetic fields and what pot...
Aims. Magnetic fields play an important role during the formation and evolution of stars. Of particu...
Context.We examine the MHD instabilities arising in the radiation zone of a differentially rotating ...
The stability of the magnetic field in radiation zones is of crucial importance for mixing and angul...
Context. The question of the origin and evolution of magnetic fields in stars possessing a radiative...
The stability of large-scale magnetic fields in rotating stars is explored, using 3D numerical hydro...
Abstract—The stability of a toroidal magnetic field in the rotating radiation zone of a star is anal...
International audienceContext: We examine the MHD instabilities arising in the radiation zone of a d...
The magnetic field in stellar radiation zones can play an important role in phenomena such...
Aims.Two questions are addressed as to how strong magnetic fields can be stored in rotating stellar ...
International audienceContext. The interactions between magnetic fields and differential rotation in...
The questions of how strong magnetic fields can be stored in rotating stellar radiative zones withou...
We further develop the Tayler--Spruit dynamo theory, based on the most efficient instability for gen...
We further develop the Tayler-Spruit dynamo theory, based on the most efficient instability for ge...
We investigate the 50-year old hypothesis that the magnetic fields of the Ap stars are stable equili...