White dwarf pollution by planets in stellar binaries
arXiv:1607.01397 · doi:10.1093/mnrasl/slw134
Abstract
Approximately of white dwarfs (WDs) show signs of pollution by metals, which is likely due to the accretion of tidally disrupted planetary material. Models invoking planet-planet interactions after WD formation generally cannot explain pollution at cooling times of several Gyr. We consider a scenario in which a planet is perturbed by Lidov-Kozai oscillations induced by a binary companion and exacerbated by stellar mass loss, explaining pollution at long cooling times. Our computed accretion rates are consistent with observations assuming planetary masses between and , although nongravitational effects may already be important for masses . The fraction of polluted WDs in our simulations, , is consistent with observations of WDs with intermediate cooling times between and 1 Gyr. For cooling times Gyr and Gyr, our scenario cannot explain the high observed pollution fractions of up to 0.7. Nevertheless, our results motivate searches for companions around polluted WDs.
Accepted for publication in MNRAS Letters. 5 pages, 5 figures
References in corpus (12)
- The frequency of planetary debris around young white dwarfs
- The Mass of KOI-94d and a Relation for Planet Radius, Mass, and Incident Flux
- Foretellings of Ragnarök: World-engulfing Asymptotic Giants and the Inheritance of White Dwarfs
- Pollution of single white dwarfs by accretion of many small asteroids
- Hot Jupiters and Cool Stars
- On the Spectral Evolution of Cool, Helium-Atmosphere White Dwarfs: Detailed Spectroscopic and Photometric Analysis of DZ Stars
- Planet Engulfment by ~1.5-3 Solar-Mass Red Giants
- The triple evolution dynamical instability: Stellar collisions in the field and the formation of exotic binaries
- The accretion-diffusion scenario for metals in cool white dwarfs
- X-ray and Infrared Observations of Two Externally-Polluted White Dwarfs
- Secular dynamics in hierarchical three-body systems with mass loss and mass transfer
- Q in Other Solar Systems
Cited by in corpus (18)
- The unbiased frequency of planetary signatures around single and binary white dwarfs using and
- Planetary engulfment as a trigger for white dwarf pollution
- Explaining the variability of WD 1145+017 with simulations of asteroid tidal disruption
- Tidal disruption of planetary bodies by white dwarfs I: A hybrid SPH-analytical approach
- Tidal disruption of planetary bodies by white dwarfs II: Debris disc structure and ejected interstellar asteroids
- Numerical Simulations of Gaseous Disks Generated from Collisional Cascades at the Roche Limits of White Dwarf Stars
- Formation and merging of Mass Gap Black Holes in Gravitational Wave Merger Events from Wide Hierarchical Quadruple Systems
- The fates of Solar system analogues with one additional distant planet
- Post-main-sequence debris from rotation-induced YORP break-up of small bodies II: multiple fissions, internal strengths and binary production
- Binary star influence on post-main-sequence multi-planet stability
- Orbital relaxation and excitation of planets tidally interacting with white dwarfs
- Circumbinary exoplanets and brown dwarfs with the Laser Interferometer Space Antenna
- Post main sequence evolution of icy minor planets II: water retention and white dwarf pollution around massive progenitor stars
- The dynamical history of the evaporating or disrupted ice giant planet around white dwarf WD J0914+1914
- Post-main-sequence evolution of icy minor planets. III. water retention in dwarf planets and exo-moons and implications for white dwarf pollution
- Survivability of radio-loud planetary cores orbiting white dwarfs
- The critical binary star separation for a planetary system origin of white dwarf pollution
- The unstable fate of the planet orbiting the A-star in the HD 131399 triple stellar system