We present results from new self-consistent 3D magnetohydrodynamics(MHD)simulations of the magnetospheres from massive stars with a dipole magnetic axis that has a non-zero obliquity angle (β) to the star’s rotation axis. As an initial direct application, we compare the global structure of co-rotating discs for nearly aligned (β = 5◦) versus half-oblique (β = 45◦) models, both with moderately rapid rotation (∼0.5 critical). We find that accumulation surfaces broadly resemble the forms predicted by the analytical rigidly rotating magnetosphere model, but the mass buildup to near the critical level for centrifugal breakout against magnetic confinement distorts the field from the imposed initial dipole. This leads to an associated warping of t...
Aims. We investigate the accretion process from an accretion disk onto a magnetized rotating star wi...
Abstract. A subpopulation (∼10%) of hot, luminous, massive stars have been revealed through spectrop...
Context. Oblique magnetic dipole fields have been detected in Bp stars for several decades, and more...
We present results from new self-consistent 3D MHD simulations of the magnetospheres from massive st...
International audienceWe have performed 3D isothermal MHD simulation of a magnetic rotating massive ...
A subpopulation (~10%) of hot, luminous, massive stars have been revealed through spectropolarimetry...
The term “magnetosphere” originated historically from early spacecraft measurements of plasma trappe...
AAV acknowledges support from a Royal Astronomical Society Fellowship. JM acknowledges support from ...
Building on results from the Magnetism in Massive Stars (MiMeS) project, this paper shows how a two-...
Building on results from the Magnetism in Massive Stars (MiMeS) project, this paper shows how a two-...
International audienceMagnetic confinement of stellar winds leads to the formation of magnetospheres...
Observations of surface magnetic fields of cool stars reveal a large diversity of configurations. Al...
Stellar winds are thought to be the main process responsible for the spin down of main-sequence star...
International audienceAims. We investigate the accretion process from an accretion disk onto a magne...
Aims. We investigate the accretion process from an accretion disk onto a magnetized rotating star wi...
Abstract. A subpopulation (∼10%) of hot, luminous, massive stars have been revealed through spectrop...
Context. Oblique magnetic dipole fields have been detected in Bp stars for several decades, and more...
We present results from new self-consistent 3D MHD simulations of the magnetospheres from massive st...
International audienceWe have performed 3D isothermal MHD simulation of a magnetic rotating massive ...
A subpopulation (~10%) of hot, luminous, massive stars have been revealed through spectropolarimetry...
The term “magnetosphere” originated historically from early spacecraft measurements of plasma trappe...
AAV acknowledges support from a Royal Astronomical Society Fellowship. JM acknowledges support from ...
Building on results from the Magnetism in Massive Stars (MiMeS) project, this paper shows how a two-...
Building on results from the Magnetism in Massive Stars (MiMeS) project, this paper shows how a two-...
International audienceMagnetic confinement of stellar winds leads to the formation of magnetospheres...
Observations of surface magnetic fields of cool stars reveal a large diversity of configurations. Al...
Stellar winds are thought to be the main process responsible for the spin down of main-sequence star...
International audienceAims. We investigate the accretion process from an accretion disk onto a magne...
Aims. We investigate the accretion process from an accretion disk onto a magnetized rotating star wi...
Abstract. A subpopulation (∼10%) of hot, luminous, massive stars have been revealed through spectrop...
Context. Oblique magnetic dipole fields have been detected in Bp stars for several decades, and more...