Classical Be stars are the only Main Sequence stars that possess Keplerian decretion circumstellar disks ruled by viscous processes. The physical properties of the disk can be studied by modeling its physical structure and solving the radiative transfer problem. At this point, the calculation of synthetic observables arises as a tool to investigate the physical quantities of these systems. Among the proposed models to explain Be star disks, the Viscous Decretion Disk model is the only one correctly explaining a large set of evidence that implies that viscous shear is the mechanism driving the disk outflow. Modeling of observations requires elaborate procedures to achieve reliable results. In the case of Be stars, the system under study is ...
There is an increasing body of evidence that suggests that Be disks are well described by the Viscou...
Be stars possess gaseous circumstellar disks that modify in many ways the spectrum of the central B ...
AcceptedInternational audienceContext. Classical Be stars are hot non-supergiant stars surrounded by...
The brightness and proximity of many classical Be stars makes them perfect laboratories for studying...
In "Viscous Decretion Disk" (VDD) model for circumstellar disks Be stars, material is dynamically ej...
While the presence of discs around classical Be stars is well established, their origin is still unc...
Context. The viscous decretion disk (VDD) model is able to explain most of the currently observable ...
10 pagesInternational audienceAims. We report theoretical spectral energy distributions (SEDs), Br? ...
Context. Be stars are rapid rotators surrounded by a gaseous disk envelope whose origin is still und...
Aims. We report theoretical spectral energy distributions (SEDs), Br$\gamma$ line profiles and visib...
Aims. In the context of Be stars, we re-studied the viscous transonic decretion disk model of these ...
International audienceContext. Be stars are rapid rotators surrounded by a gaseous disk envelope who...
Be stars are massive stars with the presence of material around them in the form of a disk. The form...
Context. The structure of the inner parts of Be star disks (≲ 20 stellar radii) is well explained by...
Disks are a common feature in astrophysical systems. They are present in young stellar objects, cata...
There is an increasing body of evidence that suggests that Be disks are well described by the Viscou...
Be stars possess gaseous circumstellar disks that modify in many ways the spectrum of the central B ...
AcceptedInternational audienceContext. Classical Be stars are hot non-supergiant stars surrounded by...
The brightness and proximity of many classical Be stars makes them perfect laboratories for studying...
In "Viscous Decretion Disk" (VDD) model for circumstellar disks Be stars, material is dynamically ej...
While the presence of discs around classical Be stars is well established, their origin is still unc...
Context. The viscous decretion disk (VDD) model is able to explain most of the currently observable ...
10 pagesInternational audienceAims. We report theoretical spectral energy distributions (SEDs), Br? ...
Context. Be stars are rapid rotators surrounded by a gaseous disk envelope whose origin is still und...
Aims. We report theoretical spectral energy distributions (SEDs), Br$\gamma$ line profiles and visib...
Aims. In the context of Be stars, we re-studied the viscous transonic decretion disk model of these ...
International audienceContext. Be stars are rapid rotators surrounded by a gaseous disk envelope who...
Be stars are massive stars with the presence of material around them in the form of a disk. The form...
Context. The structure of the inner parts of Be star disks (≲ 20 stellar radii) is well explained by...
Disks are a common feature in astrophysical systems. They are present in young stellar objects, cata...
There is an increasing body of evidence that suggests that Be disks are well described by the Viscou...
Be stars possess gaseous circumstellar disks that modify in many ways the spectrum of the central B ...
AcceptedInternational audienceContext. Classical Be stars are hot non-supergiant stars surrounded by...