Non-LTE models for the gaseous metal component of circumstellar discs around white dwarfs
arXiv:1103.5995 · doi:10.1051/0004-6361/201116625
Abstract
Gaseous metal discs around single white dwarfs have been discovered recently. They are thought to develop from disrupted planetary bodies. Spectroscopic analyses will allow us to study the composition of extrasolar planetary material. We investigate in detail the first object for which a gas disc was discovered (SDSS J122859.93+104032.9). Therefor we perform non-LTE modelling of viscous gas discs by computing the detailed vertical structure and line spectra. The models are composed of carbon, oxygen, magnesium, silicon, calcium, and hydrogen with chemical abundances typical for Solar System asteroids. Line asymmetries are modelled by assuming spiral-arm and eccentric disc structures as suggested by hydrodynamical simulations. The observed infrared Ca II emission triplet can be modelled with a hydrogen-deficient metal gas disc located inside of the tidal disruption radius, with an effective temperature of about 6000 K and a surface mass density of 0.3 g/cm^2. The inner radius is well constrained at about 0.64 Solar radii. The line profile asymmetry can be reproduced by either a spiral-arm structure or an eccentric disc, the latter being favoured by its time variability behaviour. Such structures, reaching from 0.64 to 1.5 Solar radii, contain a mass of about 3 to 6*10^21 g, the latter equivalent to the mass of a 135-km diameter Solar System asteroid.
7 pages, 10 figures, accepted for publication in A&A
References in corpus (8)
- A gaseous metal disk around a white dwarf
- The Chemical Composition of an Extrasolar Minor Planet
- Pollution of single white dwarfs by accretion of many small asteroids
- Debris Disks Around White Dwarfs: The DAZ Connection
- Carbon Deficiency in Externally-Polluted White Dwarfs: Evidence for Accretion of Asteroids
- Six White Dwarfs with Circumstellar Silicates
- The accretion-diffusion scenario for metals in cool white dwarfs
- SDSSJ104341.53+085558.2: A second white dwarf with a gaseous debris disc
Cited by in corpus (17)
- The frequency of planetary debris around young white dwarfs
- A planetesimal orbiting within the debris disc around a white dwarf star
- Accretion of a giant planet onto a white dwarf
- Variable Emission from a Gaseous Disc around a Metal-Polluted White Dwarf
- Scars of Intense Accretion Episodes at Metal-Rich White Dwarfs
- Planetary Systems Around White Dwarfs
- White dwarfs with planetary remnants in the era of Gaia I: six emission line systems
- Serendipitous Discovery of Nine White Dwarfs With Gaseous Debris Disks
- Five New Post-Main-Sequence Debris Disks with Gaseous Emission
- The gaseous debris disk of the white dwarf SDSS J1228+1040. HST/COS search for far-ultraviolet signatures
- Disk or Companion: Characterizing Excess Infrared Flux in Seven White Dwarf Systems with Near-Infrared Spectroscopy
- WD 1145+017: Alternative models of the atmosphere, dust clouds, and gas rings
- Velocity-imaging the rapidly precessing planetary disc around the white dwarf HE 1349-2305 using Doppler tomography
- Non-LTE spectral models for the gaseous debris-disk component of Ton 345
- Origin of Ca II emission around polluted white dwarfs
- Partial disruption of a planet around a white dwarf: the effect of perturbation from the remnant planet on the accretion
- Modeling Circumstellar Gas Emission around a White Dwarf Using Cloudy