WD 1856 b: a close giant planet around a white dwarf that could have survived a common-envelope phase
arXiv:2010.09747 · doi:10.1093/mnras/staa3703
Abstract
The discovery of a giant planet candidate orbiting the white dwarf WD 1856+534 with an orbital period of 1.4 d poses the questions of how the planet reached its current position. We here reconstruct the evolutionary history of the system assuming common envelope evolution as the main mechanism that brought the planet to its current position. We find that common envelope evolution can explain the present configuration if it was initiated when the host star was on the AGB, the separation of the planet at the onset of mass transfer was in the range 1.69-2.35 au, and if in addition to the orbital energy of the surviving planet either recombination energy stored in the envelope or another source of additional energy contributed to expelling the envelope. We also discuss the evolution of the planet prior to and following common envelope evolution. Finally, we find that if the system formed through common envelope evolution, its total age is in agreement with its membership to the Galactic thin disc. We therefore conclude that common envelope evolution is at least as likely as alternative formation scenarios previously suggested such as planet-planet scattering or Kozai-Lidov oscillations.
7 pages, 3 figures, 2 tables; accepted for publication in MNRAS
References in corpus (28)
- Atmospheric Escape from Hot Jupiters
- Roche lobe effects on the atmospheric loss of "Hot Jupiters"
- The frequency of planetary debris around young white dwarfs
- A gaseous metal disk around a white dwarf
- On the Spectral Evolution of Hot White Dwarf Stars. I. A Detailed Model-Atmosphere Analysis of Hot White Dwarfs from SDSS DR12
- The Initial-Final Mass Relation: Direct Constraints at the Low Mass End
- Post-common-envelope binaries from SDSS. IX: Constraining the common-envelope efficiency
- The initial-final mass relationship of white dwarfs revisited: effect on the luminosity function and mass distribution
- Foretellings of Ragnarök: World-engulfing Asymptotic Giants and the Inheritance of White Dwarfs
- A Giant Planet Candidate Transiting a White Dwarf
- Survival of a brown dwarf after engulfment by a red giant star
- A planetesimal orbiting within the debris disc around a white dwarf star
- Accretion of a giant planet onto a white dwarf
- The frequency and infrared brightness of circumstellar discs at white dwarfs
- SDSSJ104341.53+085558.2: A second white dwarf with a gaseous debris disc
- Massive planet migration: Theoretical predictions and comparison with observations
- Monte Carlo simulations of post-common-envelope white dwarf + main sequence binaries: comparison with the SDSS DR7 observed sample
- The unbiased frequency of planetary signatures around single and binary white dwarfs using and
- Cool DZ white dwarfs I: Identification and spectral analysis
- On the role of recombination in common-envelope ejections
- High resolution optical spectroscopy of Praesepe white dwarfs
- Energy transport by convection in the common envelope evolution
- Cold giant planets evaporated by hot white dwarfs
- Do instabilities in high-multiplicity systems explain the existence of close-in white dwarf planets?
- How Jupiters save or destroy inner Neptunes around evolved stars
- The evolution of the self-lensing binary KOI-3278: evidence of extra energy sources during CE evolution
- Secular dynamics of hierarchical multiple systems composed of nested binaries, with an arbitrary number of bodies and arbitrary hierarchical structure. III. Suborbital effects: hybrid integration techniques and orbit-averaging corrections
- Brown Dwarf Companions to White Dwarfs
Cited by in corpus (35)
- Close detached white dwarf + brown dwarf binaries: further evidence for low values of the common envelope efficiency
- Planetary Systems Around White Dwarfs
- Do instabilities in high-multiplicity systems explain the existence of close-in white dwarf planets?
- Giant planet engulfment by evolved giant stars: light curves, asteroseismology, and survivability
- The White Dwarf Binary Pathways Survey -- VIII: a post common envelope binary with a massive white dwarf and an active G-type secondary star
- Successive common envelope events from multiple planets
- Magnetic dynamos in white dwarfs -- II. Relating magnetism and pollution
- A red giant branch common envelope evolution scenario for the exoplanet WD 1856 b
- 10,000 Resolved Triples from Gaia: Empirical Constraints on Triple Star Populations
- Can Gaia find planets around white dwarfs?
- Hydrodynamics and survivability during post-main-sequence planetary engulfment
- Formation of long-period post-common-envelope binaries I. No extra energy is needed to explain oxygen-neon white dwarfs paired with AFGK-type main-sequence stars
- The first catalog of candidate white dwarf-main sequence binaries in open star clusters: A new window into common envelope evolution
- A transmission spectrum of the planet candidate WD 1856+534 b and a lower limit to its mass
- Mapping the pressure-dependent day-night temperature contrast of a strongly irradiated atmosphere with HST spectroscopic phase curve
- Gemini/GMOS Transmission Spectroscopy of the Grazing Planet Candidate WD 1856+534 b
- Disk or Companion: Characterizing Excess Infrared Flux in Seven White Dwarf Systems with Near-Infrared Spectroscopy
- The future influence of six exoplanets on the envelope properties of their parent stars on the giant branches
- Lost in space: companions' fatal dance around massive dying stars
- High-resolution resonant portraits of a single-planet white dwarf system
- TTV Constraints on Additional Planets in the WD 1856+534 system
- Potential for life to exist and be detected on Earth-like planets orbiting white dwarfs
- The C/N ratio from FUV spectroscopy as a constraint upon the past evolution of HS0218+3229
- Two substellar survivor candidates; one found and one missing
- Rapid expansion of red giant stars during core helium flash by waves propagation to the envelope and implications to exoplanets
- Small and Close-In Planets are Uncommon Around A-type Stars
- Residual eccentricity of an Earth-like planet orbiting a red giant Sun
- ZTFJ0038+2030: a long period eclipsing white dwarf and a substellar companion
- Common envelope evolution and triple dynamics as potential pathways to form the inner white dwarf + brown dwarf binary of the triple star system Gaia 0007-1605
- Aerosols and hydrocarbons in the atmosphere of a white dwarf planet
- Second-generation planet formation after tidal disruption from common envelope evolution
- Fates of the sub-stellar objects (FOSSO) I. Fates of the known brown dwarfs in main-sequence--BD binaries
- Atmospheric Signatures of Common Envelope Evolution in White Dwarf Planets
- Life in the dark: Potential urability of moons of rogue planets
- Faint intermediate luminosity optical transients (ILOTs) from engulfing exoplanets on the Hertzsprung gap