Context. Main-sequence late-type stars with masses of less than 0.35 M⊙ are fully convective. Aims. The goal is to study convection, differential rotation, and dynamos as functions of rotation in fully convective stars. Methods. Three-dimensional hydrodynamic and magnetohydrodynamic numerical simulations with a star-in-a-box model, in which a spherical star is immersed inside of a Cartesian cube, are used. The model corresponds to a 0.2 M⊙ main-sequence M5 dwarf. A range of rotation periods (Prot) between 4.3 and 430 d is explored. Results. The slowly rotating model with Prot = 430 days produces anti-solar differential rotation with a slow equator and fast poles, along with predominantly axisymmetric quasi-steady large-scale magnetic fields...
Core convection and dynamo activity deep within rotating A-type stars of 2 solar masses are studied ...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceMagnetic activity and differential rotation are commonly observed features on ...
Context. Main-sequence late-type stars with masses of less than 0.35 M⊙ are fully convective. Aims. ...
Copyright © 2008 American Astronomical Society / IOP PublishingWe present three-dimensional nonlinea...
International audienceM-stars are among the most active and numerous stars in our galaxy. Their acti...
International audienceM-stars are among the most active and numerous stars in our galaxy. Their acti...
We present the results of three-dimensional simulations of the deep convective envelope of a young (...
17 pages, 4 figures, supplementary online material (including 2 figures)Understanding how cool stars...
Understanding how cool stars produce magnetic fields within their interiors is crucial for predictin...
The dynamo action achieved in a global-scale stellar convection simulation is assessed for a Sun-lik...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
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 ...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceMagnetic activity and differential rotation are commonly observed features on ...
Context. Main-sequence late-type stars with masses of less than 0.35 M⊙ are fully convective. Aims. ...
Copyright © 2008 American Astronomical Society / IOP PublishingWe present three-dimensional nonlinea...
International audienceM-stars are among the most active and numerous stars in our galaxy. Their acti...
International audienceM-stars are among the most active and numerous stars in our galaxy. Their acti...
We present the results of three-dimensional simulations of the deep convective envelope of a young (...
17 pages, 4 figures, supplementary online material (including 2 figures)Understanding how cool stars...
Understanding how cool stars produce magnetic fields within their interiors is crucial for predictin...
The dynamo action achieved in a global-scale stellar convection simulation is assessed for a Sun-lik...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
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 ...
International audienceYoung solar-type stars rotate rapidly and many are magnetically active. Some a...
International audienceMagnetic activity and differential rotation are commonly observed features on ...