Axisymmetric stellar wind solutions are presented that were obtained by numerically solving the ideal magnetohydrodynamic (MHD) equations. Stationary solutions are critically analyzed using the knowledge of the flux functions. These flux functions enter in the general variational principle governing all axisymmetric stationary ideal MI-ID equilibria. The magnetized wind solutions for (differentially) rotating stars contain both a "wind" and a "dead" zone. We illustrate the influence of the magnetic field topology on the wind acceleration pattern by varying the coronal field strength and the extent of the dead zone. This is evident from the resulting variations in the location and appearance of the critical curves for whi...
We investigate under which conditions cold, fan-shaped winds can be steadily launched from thin (Kep...
We investigate the launching of outflows from the disc–magnetosphere boundary of slowly and rapidly ...
In order to describe the magnetohydrodynamical (MHD) winds/jets from a geometrically thin accretion ...
Axisymmetric stellar wind solutions are presented that were obtained by numerically solving the idea...
We present 2.5D stationary solar/stellar wind numerical simulation results obtained within the magne...
[[abstract]]We formulate the time-steady, axisymmetric problem of stellar magnetospheric inflow of g...
. We discuss steady-state transonic outflows obtained by direct numerical solution of the hydrodynam...
[[abstract]]We construct steady, axisymmetric, numerical models of the sub-Alfvenic regions of cool ...
By means of self-consistent three-dimensional magnetohydrodynamics (MHD) numerical simulations, we a...
The term “magnetosphere” originated historically from early spacecraft measurements of plasma trappe...
We discuss steady-state transonic outflows obtained by direct numerical solution of the hydrodynamic...
We present numerical magnetohydrodynamic (MHD) simulations of the effect of stellar dipole magnetic ...
International audience Aims: This paper examines the outflows associated with the interaction of a s...
We discuss steady-state transonic outflows obtained by direct numerical solution of the hydrodynamic...
Cool giant and supergiant stars generally present low velocity winds with high mass-loss rates. Seve...
We investigate under which conditions cold, fan-shaped winds can be steadily launched from thin (Kep...
We investigate the launching of outflows from the disc–magnetosphere boundary of slowly and rapidly ...
In order to describe the magnetohydrodynamical (MHD) winds/jets from a geometrically thin accretion ...
Axisymmetric stellar wind solutions are presented that were obtained by numerically solving the idea...
We present 2.5D stationary solar/stellar wind numerical simulation results obtained within the magne...
[[abstract]]We formulate the time-steady, axisymmetric problem of stellar magnetospheric inflow of g...
. We discuss steady-state transonic outflows obtained by direct numerical solution of the hydrodynam...
[[abstract]]We construct steady, axisymmetric, numerical models of the sub-Alfvenic regions of cool ...
By means of self-consistent three-dimensional magnetohydrodynamics (MHD) numerical simulations, we a...
The term “magnetosphere” originated historically from early spacecraft measurements of plasma trappe...
We discuss steady-state transonic outflows obtained by direct numerical solution of the hydrodynamic...
We present numerical magnetohydrodynamic (MHD) simulations of the effect of stellar dipole magnetic ...
International audience Aims: This paper examines the outflows associated with the interaction of a s...
We discuss steady-state transonic outflows obtained by direct numerical solution of the hydrodynamic...
Cool giant and supergiant stars generally present low velocity winds with high mass-loss rates. Seve...
We investigate under which conditions cold, fan-shaped winds can be steadily launched from thin (Kep...
We investigate the launching of outflows from the disc–magnetosphere boundary of slowly and rapidly ...
In order to describe the magnetohydrodynamical (MHD) winds/jets from a geometrically thin accretion ...