Likely detection of water-rich asteroid debris in a metal-polluted white dwarf
arXiv:1503.07864 · doi:10.1093/mnras/stv701
Abstract
The cool white dwarf SDSS J124231.07+522626.6 exhibits photospheric absorption lines of 8 distinct heavy elements in medium resolution optical spectra, notably including oxygen. The Teff = 13000 K atmosphere is helium-dominated, but the convection zone contains significant amounts of hydrogen and oxygen. The four most common rock-forming elements (O, Mg, Si, and Fe) account for almost all the accreted mass, totalling at least 1.2e+24 g, similar to the mass of Ceres. The time-averaged accretion rate is 2e+10 g/s, one of the highest rates inferred among all known metal-polluted white dwarfs. We note a large oxygen excess, with respect to the most common metal oxides, suggesting that the white dwarf accreted planetary debris with a water content of ~38 per cent by mass. This star, together with GD 61, GD 16, and GD 362, form a small group of outliers from the known population of evolved planetary systems accreting predominantly dry, rocky debris. This result strengthens the hypothesis that, integrated over the cooling ages of white dwarfs, accretion of water-rich debris from disrupted planetesimals may significantly contribute to the build-up of trace hydrogen observed in a large fraction of helium-dominated white dwarf atmospheres.
12 pages, 5 figures, 5 tables. Accepted for publication in MNRAS
References in corpus (18)
- Building Terrestrial Planets
- The frequency of planetary debris around young white dwarfs
- A gaseous metal disk around a white dwarf
- The Chemical Composition of an Extrasolar Minor Planet
- Foretellings of Ragnarök: World-engulfing Asymptotic Giants and the Inheritance of White Dwarfs
- Pollution of single white dwarfs by accretion of many small asteroids
- Formation of planetary debris discs around white dwarfs I: Tidal disruption of an extremely eccentric asteroid
- On the Spectral Evolution of Cool, Helium-Atmosphere White Dwarfs: Detailed Spectroscopic and Photometric Analysis of DZ Stars
- Debris Disks Around White Dwarfs: The DAZ Connection
- Carbon Deficiency in Externally-Polluted White Dwarfs: Evidence for Accretion of Asteroids
- The chemical diversity of exo-terrestrial planetary debris around white dwarfs
- Infrared Emission from the Dusty Disk Orbiting GD 362, An Externally-Polluted White Dwarf
- Signs of a faint disc population at polluted white dwarfs
- Variable Emission from a Gaseous Disc around a Metal-Polluted White Dwarf
- X-ray and Infrared Observations of Two Externally-Polluted White Dwarfs
- Scars of Intense Accretion Episodes at Metal-Rich White Dwarfs
- Hydrogen delivery onto white dwarfs from remnant exo-Oort cloud comets
- Evidence for an Anhydrous Carbonaceous Extrasolar Minor Planet
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- Growth Model Interpretation of Planet Size Distribution
- Current challenges in the physics of white dwarf stars
- Oxygen fugacities of extrasolar rocks: Evidence for an Earth-like geochemistry of exoplanets
- The unbiased frequency of planetary signatures around single and binary white dwarfs using and
- Cool DZ white dwarfs I: Identification and spectral analysis
- Compositions of Planetary Debris around Dusty White Dwarfs
- Interpretation and diversity of exoplanetary material orbiting white dwarfs
- white dwarfs within 40 pc I: spectroscopic observations of new candidates
- Tidal disruption of planetary bodies by white dwarfs I: A hybrid SPH-analytical approach
- The orbital evolution of asteroids, pebbles and planets from giant branch stellar radiation and winds
- Does a Differentiated, Carbonate-Rich, Rocky Object Pollute the White Dwarf SDSSJ104341.53+085558.2?
- Are exoplanetesimals differentiated?
- A Photometric and Spectroscopic Investigation of the DB White Dwarf Population using SDSS and Gaia Data
- The Fate of Exomoons in White Dwarf Planetary Systems
- Infrared-excess white dwarfs in the Gaia 100 pc sample
- Polluted White Dwarfs: Mixing Regions and Diffusion Timescales
- Planetary Systems Around White Dwarfs
- Solar Abundances of Rock Forming Elements, Extreme Oxygen and Hydrogen in a Young Polluted White Dwarf
- White dwarf pollution by hydrated planetary remnants: Hydrogen and Metals in WD J204713.76-125908.9
- Discovery of Beryllium in White Dwarfs Polluted by Planetesimal Accretion
- From Hydrogen to Helium: The Spectral Evolution of White Dwarfs as Evidence for Convective Mixing
- White dwarfs with planetary remnants in the era of Gaia I: six emission line systems
- Evidence for eccentric, precessing gaseous debris in the circumstellar absorption towards WD 1145+017
- Bayesian constraints on the origin and geology of exo-planetary material using a population of externally polluted white dwarfs
- The fates of Solar system analogues with one additional distant planet
- Linking long-term planetary -body simulations with periodic orbits: application to white dwarf pollution
- Spectral analysis of ultra-cool white dwarfs polluted by planetary debris
- Post-main-sequence debris from rotation-induced YORP break-up of small bodies II: multiple fissions, internal strengths and binary production
- The spectral evolution of white dwarfs: where do we stand?
- Tidal circularization of gaseous planets orbiting white dwarfs
- New chondritic bodies identified in eight oxygen-bearing white dwarfs
- Embedding planetesimals into white dwarf discs from large distances
- GD424 -- a helium-atmosphere white dwarf with a large amount of trace hydrogen in the process of digesting a rocky planetesimal
- Post main sequence evolution of icy minor planets II: water retention and white dwarf pollution around massive progenitor stars
- Diffusion coefficients in the envelopes of white dwarfs
- Where are the Extrasolar Mercuries?
- PEWDD: A database of white dwarfs enriched by exo-planetary material
- A New Generation of Cool White Dwarf Atmosphere Models. III. WD J2356209: Accretion of a Planetesimal with an Unusual Composition
- Carbon dredge-up required to explain the Gaia white dwarf colour-magnitude bifurcation
- Post-main-sequence evolution of icy minor planets. III. water retention in dwarf planets and exo-moons and implications for white dwarf pollution
- Unusual Abundances from Planetary System Material Polluting the White Dwarf G238-44
- Asynchronous accretion can mimic diverse white dwarf pollutants I: core and mantle fragments
- Reduced late bombardment on rocky exoplanets around M-dwarfs
- A Chondritic Solar Neighborhood
- On the Spectral Evolution of Hot White Dwarf Stars. IV. The Diffusion and Mixing of Residual Hydrogen in Helium-rich White Dwarfs
- A Convective Dredge-Up Model as the Origin of Hydrogen in DBA White Dwarfs
- How Sublimation Delays the Onset of Dusty Debris Disk Formation Around White Dwarf Stars
- Magnetospherically-trapped dust and a possible model for the unusual transits at WD 1145+017
- The critical binary star separation for a planetary system origin of white dwarf pollution
- Modeling the Evolution of Silicate/Volatile Accretion Discs around White Dwarfs
- Asynchronous accretion can mimic diverse white dwarf pollutants II: water content
- The smallest planetary drivers of white dwarf pollution
- Spectral analysis of cool white dwarfs accreting from planetary systems: from the UV to the optical
- White dwarf planetary debris dependence on physical structure distributions within asteroid belts
- Generating metal-polluting debris in white dwarf planetary systems from small-impact crater ejecta
- Atmospheric Temperature Inversions and He I 5876 Core Profile Structure in White Dwarfs
- New simulations of accreting DA white dwarfs: inferring accretion rates from the surface contamination
- High-resolution resonant portraits of a single-planet white dwarf system
- Binary asteroid scattering around white dwarfs
- Characterizing planetary material accreted by cool helium atmosphere white dwarfs using an exponentially decaying disc model
- Discovery of an icy and nitrogen-rich extrasolar planetesimal
- White dwarf magnetospheres: Shielding volatile content of icy objects and implications for volatile pollution scarcity
- Do White Dwarfs Sample Water-Rich Planetary Material?
- Gaia white dwarfs with infrared excess I. The 100 pc catalogue
- Diversity of Exoplanets
- Detection and Preliminary Characterisation of Polluted White Dwarfs from Gaia EDR3 and LAMOST
- I Can Do It With A Broken Planetesimal: Characterising the planetary debris in heavily polluted cool white dwarfs