Be stars are rapidly rotating B stars with Balmer emission lines that indicate the presence of a Keplerian, rotationally supported, circumstellar gas disk. Current disk models, referred to as "decretion disks," make use of the zero-torque inner boundary condition typically applied to accretion disks, with the "decretion" modeled by adding mass to the disk at a radius of about 2% larger than the inner disk boundary. We point out that, in this model, the rates at which mass and energy need to be added to the disk are implausibly large. What is required is that the disk has not only a source of mass but also a continuing source of angular momentum. We argue that the disk evolution may be more physically modeled by application of the nonzero to...
Classical B-emission (Be) stars are rapidly-rotating, massive stars that possess a dense, equatorial...
As the disk formation mechanism(s) in Be stars is(are) as yet unknown, we investigate the role of ra...
10 pagesInternational audienceAims. We report theoretical spectral energy distributions (SEDs), Br? ...
Aims. The main theoretical problem for the formation of a Keplerian disk around Be stars is how angu...
The spin-down of Be stars due to angular momentum transport from star to disc has been considered. T...
As the disk formation mechanism(s) in Be stars is(are) as yet unknown, we investigate the role of ra...
International audienceSpectropolarimetric surveys reveal that 8–10 per cent of OBA stars harbor larg...
Aims. The main theoretical problem for the formation of a Keplerian disk around Be stars is how to s...
Context. Even though it is broadly accepted that single Be stars are rapidly rotating star...
Context. Be stars are rapidly rotating B main sequence stars that show line emission due to an outfl...
Context. Be stars are rapid rotators surrounded by a gaseous disk envelope whose origin is still und...
International audienceContext. The early pre-main sequence phase during which solar-mass stars are s...
Context. Evolutionary models of fast-rotating stars show that the stellar rotational velocity may ap...
Circumstellar discs around Be stars are formed by the material ejected by the central star. This pro...
Classical Be stars are the only Main Sequence stars that possess Keplerian decretion circumstellar d...
Classical B-emission (Be) stars are rapidly-rotating, massive stars that possess a dense, equatorial...
As the disk formation mechanism(s) in Be stars is(are) as yet unknown, we investigate the role of ra...
10 pagesInternational audienceAims. We report theoretical spectral energy distributions (SEDs), Br? ...
Aims. The main theoretical problem for the formation of a Keplerian disk around Be stars is how angu...
The spin-down of Be stars due to angular momentum transport from star to disc has been considered. T...
As the disk formation mechanism(s) in Be stars is(are) as yet unknown, we investigate the role of ra...
International audienceSpectropolarimetric surveys reveal that 8–10 per cent of OBA stars harbor larg...
Aims. The main theoretical problem for the formation of a Keplerian disk around Be stars is how to s...
Context. Even though it is broadly accepted that single Be stars are rapidly rotating star...
Context. Be stars are rapidly rotating B main sequence stars that show line emission due to an outfl...
Context. Be stars are rapid rotators surrounded by a gaseous disk envelope whose origin is still und...
International audienceContext. The early pre-main sequence phase during which solar-mass stars are s...
Context. Evolutionary models of fast-rotating stars show that the stellar rotational velocity may ap...
Circumstellar discs around Be stars are formed by the material ejected by the central star. This pro...
Classical Be stars are the only Main Sequence stars that possess Keplerian decretion circumstellar d...
Classical B-emission (Be) stars are rapidly-rotating, massive stars that possess a dense, equatorial...
As the disk formation mechanism(s) in Be stars is(are) as yet unknown, we investigate the role of ra...
10 pagesInternational audienceAims. We report theoretical spectral energy distributions (SEDs), Br? ...