Pressure shifts and abundance gradients in the atmosphere of the DAZ white dwarf GALEX J193156.8+011745
arXiv:1101.2113 · doi:10.1111/j.1365-2966.2011.18323.x
Abstract
We present a detailed model atmosphere analysis of high-dispersion and high signal-to-noise ratio spectra of the heavily polluted DAZ white dwarf GALEX J1931+0117. The spectra obtained with the VLT-Kueyen/UV-Visual Echelle Spectrograph show several well-resolved Si II spectral lines enabling a study of pressure effects on line profiles. We observed large Stark shifts in silicon lines in agreement with theoretical predictions and laboratory measurements. Taking into account Stark shifts in the calculation of synthetic spectra we reduced the scatter in individual line radial velocity measurements from ~ 3 to < 1 km/s. We present revised abundances of O, Mg, Si, Ca, and Fe based on a critical review of line broadening parameters and oscillator strengths. The new measurements are generally in agreement with our previous analysis with the exception of magnesium with a revised abundance a factor of two lower than previously estimated. The magnesium, silicon and iron abundances exceed solar abundances, but the oxygen and calcium abundances are below solar. Also, we compared the observed line profiles to synthetic spectra computed with variable accretion rates and vertical abundance distributions assuming diffusive steady-state. The inferred accretion rates vary from dM/dt = 2x10^6 for calcium to 2x10^9 g/s for oxygen. We find that the accretion flow must be oxygen-rich while being deficient in calcium relative to solar abundances. The lack of radial velocity variations between two measurement epochs suggests that GALEX J1931+0117 is probably not in a close binary and that the source of the accreted material resides in a debris disc.
Accepted for publication in MNRAS
References in corpus (8)
- A gaseous metal disk around a white dwarf
- Externally-polluted white dwarfs with dust disks
- Debris Disks Around White Dwarfs: The DAZ Connection
- The accretion-diffusion scenario for metals in cool white dwarfs
- SDSSJ104341.53+085558.2: A second white dwarf with a gaseous debris disc
- The WIRED Survey I: A Bright IR Excess Due to Dust Around the Heavily Polluted White Dwarf GALEX J193156.8+011745
- Orbital Parameters and Chemical Composition of Four White Dwarfs in Post-Common Envelope Binaries
- Iron in Hot DA White Dwarfs
Cited by in corpus (27)
- The frequency of planetary debris around young white dwarfs
- Elemental Compositions of Two Extrasolar Rocky Planetesimals
- Constraints on the Lifetimes of Disks Resulting from Tidally Destroyed Rocky Planetary Bodies
- Cool DZ white dwarfs II: Compositions and evolution of old remnant planetary systems
- Two Beyond-Primitive Extrasolar Planetesimals
- A Trio of Metal-Rich Dust and Gas Disks Found Orbiting Candidate White Dwarfs with K-Band Excess
- Rocky Extrasolar Planetary Compositions Derived from Externally-Polluted White Dwarfs
- Variable Emission from a Gaseous Disc around a Metal-Polluted White Dwarf
- Spitzer Observations of White Dwarfs: the Missing Planetary Debris Around DZ Stars
- Water Fractions in Extrasolar Planetesimals
- A Spitzer Space Telescope Study of the Debris Disks around four SDSS White Dwarfs
- A precision study of two eclipsing white dwarf plus M dwarf binaries
- Polluted White Dwarfs: Mixing Regions and Diffusion Timescales
- Discovery of Beryllium in White Dwarfs Polluted by Planetesimal Accretion
- Extrasolar Refractory-Dominated Planetesimals: an Assessment
- New chondritic bodies identified in eight oxygen-bearing white dwarfs
- PEWDD: A database of white dwarfs enriched by exo-planetary material
- Asynchronous accretion can mimic diverse white dwarf pollutants I: core and mantle fragments
- The non-explosive stellar merging origin of the ultra-massive carbon-rich white dwarfs
- Asynchronous accretion can mimic diverse white dwarf pollutants II: water content
- An ancient double degenerate merger in the Milky Way halo
- Characterizing the Chemistry of Planetary Materials Around White Dwarf Stars
- Atmospheric Temperature Inversions and He I 5876 Core Profile Structure in White Dwarfs
- Testing the mass-radius relation of white dwarfs in common proper motion pairs I.Hydrogen-dominated atmospheres
- The Elemental Compositions of Extrasolar Planetesimals
- Tracing Planetary Accretion in a 3 Gyr-old Hydrogen-Rich White Dwarf: The Extremely Polluted Atmosphere of LSPM J0207+3331
- Planets or asteroids? A geochemical method to constrain the masses of White Dwarf pollutants