On the Steady Nature of Line-Driven Disk Winds
arXiv:astro-ph/0311268 · doi:10.1086/386320
Abstract
We perform an analytic investigation of the stability of line-driven disk winds, independent of hydrodynamic simulations. Our motive is to determine whether or not line-driven disk winds can account for the wide/broad UV resonance absorption lines seen in cataclysmic variables (CVs) and quasi-stellar objects (QSOs). In both CVs and QSOs observations generally indicate that the absorption arising in the outflowing winds has a steady velocity structure on time scales exceeding years (for CVs) and decades (for QSOs). However, published results from hydrodynamic simulations of line-driven disk winds are mixed, with some researchers claiming that the models are inherently unsteady, while other models produce steady winds. The analytic investigation presented here shows that if the accretion disk is steady, then the line-driven disk wind emanating from it can also be steady. In particular, we show that a gravitational force initially increasing along the wind streamline, which is characteristic of disk winds, does not imply an unsteady wind. The steady nature of line-driven disk winds is consistent with the 1D streamline disk-wind models of Murray and collaborators and the 2.5D time-dependent models of Pereyra and collaborators. This paper emphasizes the underlying physics behind the steady nature of line-driven disk winds using mathematically simple models that mimic the disk environment
References in corpus (8)
- Black Hole Mass and Eddington Ratio as Drivers for the Observable Properties of Radio-Loud and Radio-Quiet QSOs
- The Frequency and Radio Properties of Broad Absorption Line Quasars
- Numerical simulations of mass outflows driven from accretion disks by radiation and magnetic forces
- Testing the line-driven disk wind model: time-resolved UV spectroscopy of IX Vel and V3885 Sgr
- FUSE Observations of U Geminorum During Outburst and Decline
- Resonance line-profile calculations based on hydrodynamical models of cataclysmic variable winds
- Hydrodynamic Models of Line-Driven Accretion Disk Winds III: Local Ionization Equilibrium
- Runaway Acceleration of Line-Driven Winds: the Role of the Outer Boundary
Cited by in corpus (10)
- Radiative Transfer and Acceleration in Magnetocentrifugal Winds
- Polarization properties of broad absorption line QSOs : new statistical clues
- Acceleration and Substructure Constraints in a Quasar Outflow
- MV Lyrae in Low, Intermediate, and High States
- Spectropolarimetry of PKS 0040-005 and the Orientation of Broad Absorption Line Quasars
- A polar+equatorial wind model for broad absorption line quasars: I. Fitting the C IV BAL profiles
- A Method for the Study of Accretion Disk Emission in Cataclysmic Variables I: The Model
- A Nozzle Analysis of Slow-Acceleration Solutions in One-Dimensional Models of Rotating Hot-Star Winds
- On the Steady Nature of Line-Driven Disk Winds: Application to Cataclysmic Variables
- Further Criteria for the Existence of Steady Line-Driven Winds