Giant Planets, Tiny Stars: Producing Short-Period Planets around White Dwarfs with the Eccentric Kozai-Lidov Mechanism
arXiv:2010.10534 · doi:10.3847/1538-4357/ac22a9
Abstract
The recent discoveries of WD J091405.30+191412.25 (WD J0914 hereafter), a white dwarf likely accreting material from an ice giant planet, and WD 1856+534 b (WD 1856 b hereafter), a Jupiter-sized planet transiting a white dwarf, are the first direct evidence of giant planets orbiting white dwarfs. However, for both systems the observations indicate that the planets' current orbital distances would have put them inside the stellar envelope during the red giant phase, implying that the planets must have migrated to their current orbits after their host stars became white dwarfs. Furthermore, WD J0914 is a very hot white dwarf with a short cooling time that indicates a fast migration mechanism. Here, we demonstrate that the Eccentric Kozai-Lidov (EKL) Mechanism, combined with stellar evolution and tidal effects, can naturally produce the observed orbital configurations, assuming that the white dwarfs have distant stellar companions. Indeed, WD 1856 is part of a stellar triple system, being a distant companion to a stellar binary. We provide constraints for the orbital and physical characteristics for the potential stellar companion of WD J0914 and determine the initial orbital parameters of the WD 1856 system.
Updated version, includes more details regarding observational constraints, accepted for publication in ApJ
References in corpus (25)
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- The frequency of planetary debris around young white dwarfs
- The Chemical Composition of an Extrasolar Minor Planet
- Hints for a Turnover at the Snow Line in the Giant Planet Occurrence Rate
- On the tidal evolution of Hot Jupiters on inclined orbits
- Steady-state planet migration by the Kozai-Lidov mechanism in stellar binaries
- A Giant Planet Candidate Transiting a White Dwarf
- Accretion of a giant planet onto a white dwarf
- The UKIRT Hemisphere Survey: Definition and J-band Data Release
- Chaos in the Test Particle Eccentric Kozai-Lidov Mechanism
- The Chemical Composition of an Extrasolar Kuiper-Belt-Object
- X-ray and Infrared Observations of Two Externally-Polluted White Dwarfs
- Planetary engulfment as a trigger for white dwarf pollution
- Chaotic Tides in Migrating Gas Giants: Forming Hot and Transient Warm Jupiters via High-Eccentricity Migration
- Explaining the variability of WD 1145+017 with simulations of asteroid tidal disruption
- White dwarf pollution by planets in stellar binaries
- Secular dynamics in hierarchical three-body systems with mass loss and mass transfer
- Secular chaotic dynamics in hierarchical quadruple systems, with applications to hot Jupiters in stellar binaries and triples
- Cool Companions to White Dwarf Stars from the Two Micron All Sky Survey All Sky Data Release
- Enhanced Lidov-Kozai migration and the formation of the transiting giant planet WD1856+534b
- Kozai Migration Naturally Explains the White Dwarf Planet WD1856b
- Single magnetic white dwarfs with Balmer emission lines: A small class with consistent physical characteristics as possible signposts for close-in planetary companions
- The dynamical history of the evaporating or disrupted ice giant planet around white dwarf WD J0914+1914
- Mildly-Hierarchical triple dynamics and applications to the outer solar system
Cited by in corpus (14)
- Stellar triples on the edge; Comprehensive overview of the evolution of destabilised triples leading to stellar and binary exotica
- WD 1856 b: a close giant planet around a white dwarf that could have survived a common-envelope phase
- Planetary Systems Around White Dwarfs
- Enhanced Lidov-Kozai migration and the formation of the transiting giant planet WD1856+534b
- Do instabilities in high-multiplicity systems explain the existence of close-in white dwarf planets?
- Evolution of massive stellar triples and implications for compact object binary formation
- Chaos in self-gravitating many-body systems: Lyapunov time dependence of and the influence of general relativity
- Secular chaos in white-dwarf planetary systems: origins of metal pollution and short-period planetary companions
- TOI-1259Ab -- a gas giant planet with 2.7% deep transits and a bound white dwarf companion
- Can Gaia find planets around white dwarfs?
- The post-main-sequence fate of the HR 8799 planetary system
- Rapid expansion of red giant stars during core helium flash by waves propagation to the envelope and implications to exoplanets
- Two substellar survivor candidates; one found and one missing
- 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