Radiatively-driven flow in a luminous disk is examined in the subrelativistic regime of $(v/c)^1$, taking account of radiation transfer. The flow is assumed to be vertical, and the gravity and gas pressure are ignored. When internal heating is dropped, for a given optical depth and radiation pressure at the flow base (disk ``inside''), where the flow speed is zero, the flow is analytically solved under the appropriate boundary condition at the flow top (disk ``surface''), where the optical depth is zero. The loaded mass and terminal speed of the flow are both determined by the initial conditions; the mass-loss rate increases as the initial radiation pressure increases, while the flow terminal speed increases as the initial radiation pressur...
There is growing theoretical and observational evidence that protoplanetary disc evolution may be si...
We consider accretion-disk winds, which are driven by disk radiation fields, while taking into accou...
Aims. Our aim is to study the thermal and dynamical evolution of protoplanetary discs in global simu...
Radiatively driven flow in a luminous disk is examined in the subrelativistic regime of (v/c)^1, tak...
Radiatively-driven transfer flow perpendicular to a luminous disk is examined in the suhrelativistic...
Radiatively driven transfer flow perpendicular to a luminous disk was examined under a fully special...
Accretion disks/disk accretions (beta-disks) driven by the external radiation drag exerted by a cent...
We examine a hydrodynamical wind, which emanates from an accretion disk and is driven by thermal and...
We examine the steady relativistic winds which are emanating from a luminous accretion disk and driv...
Accretion-disk winds blowing off perpendicular to a luminous disk are examined within the framework ...
We examine steady relativistic jets, emanating from an inner accretion disk, driven by disk radiatio...
The inner region of a luminous accretion disk is radiation-pressure-dominated. We estimate the surfa...
Total and internal energy requirements set constraints on the allowable temperature on the disk. In ...
There is growing theoretical and observational evidence that protoplanetary disc evolution may be si...
We examine a hydrodynamical wind, which emanates from an accretion disk and is driven by thermal, ma...
There is growing theoretical and observational evidence that protoplanetary disc evolution may be si...
We consider accretion-disk winds, which are driven by disk radiation fields, while taking into accou...
Aims. Our aim is to study the thermal and dynamical evolution of protoplanetary discs in global simu...
Radiatively driven flow in a luminous disk is examined in the subrelativistic regime of (v/c)^1, tak...
Radiatively-driven transfer flow perpendicular to a luminous disk is examined in the suhrelativistic...
Radiatively driven transfer flow perpendicular to a luminous disk was examined under a fully special...
Accretion disks/disk accretions (beta-disks) driven by the external radiation drag exerted by a cent...
We examine a hydrodynamical wind, which emanates from an accretion disk and is driven by thermal and...
We examine the steady relativistic winds which are emanating from a luminous accretion disk and driv...
Accretion-disk winds blowing off perpendicular to a luminous disk are examined within the framework ...
We examine steady relativistic jets, emanating from an inner accretion disk, driven by disk radiatio...
The inner region of a luminous accretion disk is radiation-pressure-dominated. We estimate the surfa...
Total and internal energy requirements set constraints on the allowable temperature on the disk. In ...
There is growing theoretical and observational evidence that protoplanetary disc evolution may be si...
We examine a hydrodynamical wind, which emanates from an accretion disk and is driven by thermal, ma...
There is growing theoretical and observational evidence that protoplanetary disc evolution may be si...
We consider accretion-disk winds, which are driven by disk radiation fields, while taking into accou...
Aims. Our aim is to study the thermal and dynamical evolution of protoplanetary discs in global simu...