International audienceOn the main sequence, low-mass and solar-like stars are observed to spin down over time, and magnetized stellar winds are thought to be predominantly responsible for this significant angular momentum loss. Previous studies have demonstrated that the wind torque can be predicted via formulations dependent on stellar properties, such as magnetic field strength and geometry, stellar radius and mass, wind mass-loss rate, and stellar rotation rate. Although these stars are observed to experience surface differential rotation, torque formulations so far have assumed solid-body rotation. Surface differential rotation is expected to affect the rotation of the wind and thus the angular momentum loss. To investigate how differen...
Aims. We study the acceleration of the stellar winds of rapidly rotating low mass stars and the tran...
Copyright © 2015 IOP Publishing / American Astronomical SocietyStellar wind is thought to be the mai...
Stellar winds are thought to be the main process responsible for the spin down of main-sequence star...
International audienceOn the main sequence, low-mass and solar-like stars are observed to spin down ...
International audienceOn the main sequence, low-mass and solar-like stars are observed to spin down ...
Context. Sun-like stars shed angular momentum due to the presence of magnetised stellar winds. Magne...
Context. Sun-like stars shed angular momentum due to the presence of magnetised stellar winds. Magne...
Through the angular momentum (AM) transport of the magnetized stellar wind, low-mass main sequence s...
International audienceWe use two-dimensional axisymmetric magnetohydrodynamic simulations to compute...
International audienceWe use two-dimensional axisymmetric magnetohydrodynamic simulations to compute...
International audienceWe use two-dimensional axisymmetric magnetohydrodynamic simulations to compute...
International audienceWe use two-dimensional axisymmetric magnetohydrodynamic simulations to compute...
Abstract. Stellar winds are thought to be the main process responsible for the spin down of main-seq...
This is the final version of the article. Available from American Astronomical Society via the DOI i...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Aims. We study the acceleration of the stellar winds of rapidly rotating low mass stars and the tran...
Copyright © 2015 IOP Publishing / American Astronomical SocietyStellar wind is thought to be the mai...
Stellar winds are thought to be the main process responsible for the spin down of main-sequence star...
International audienceOn the main sequence, low-mass and solar-like stars are observed to spin down ...
International audienceOn the main sequence, low-mass and solar-like stars are observed to spin down ...
Context. Sun-like stars shed angular momentum due to the presence of magnetised stellar winds. Magne...
Context. Sun-like stars shed angular momentum due to the presence of magnetised stellar winds. Magne...
Through the angular momentum (AM) transport of the magnetized stellar wind, low-mass main sequence s...
International audienceWe use two-dimensional axisymmetric magnetohydrodynamic simulations to compute...
International audienceWe use two-dimensional axisymmetric magnetohydrodynamic simulations to compute...
International audienceWe use two-dimensional axisymmetric magnetohydrodynamic simulations to compute...
International audienceWe use two-dimensional axisymmetric magnetohydrodynamic simulations to compute...
Abstract. Stellar winds are thought to be the main process responsible for the spin down of main-seq...
This is the final version of the article. Available from American Astronomical Society via the DOI i...
This is the author accepted manuscript. The final version is available from the publisher via the DO...
Aims. We study the acceleration of the stellar winds of rapidly rotating low mass stars and the tran...
Copyright © 2015 IOP Publishing / American Astronomical SocietyStellar wind is thought to be the mai...
Stellar winds are thought to be the main process responsible for the spin down of main-sequence star...