Chaotic rotation and evolution of asteroids and small planets in high-eccentricity orbits around white dwarfs
arXiv:1908.04612 · doi:10.3847/1538-4357/ab4c95
Abstract
Observed planetary debris in white dwarf atmospheres predominately originate from the destruction of small bodies on highly eccentric () orbits. Despite their importance, these minor planets have coupled physical and orbital evolution which has remained largely unexplored. Here, we present a novel approach for estimating the influence of fast chaotic rotation on the orbital evolution of high-eccentricity triaxial asteroids, and formally characterize the propagation of their angular rotation velocities and orbital elements as random time processes. By employing the impulse approximation, we demonstrate that the violent gravitational interactions during periastron passages transfer energy between the orbit and asteroid's rotation. If the distribution of spin impulses were symmetric around zero, then the net result would be a secular decrease of the semimajor axis and a further increase of the eccentricity. We find evidence, however, that the chaotic rotation may be self-regulated in such a manner that these effects are reduced or nullified. We discover that asteroids on highly eccentric orbits can break themselves apart --- in a type of YORP-less rotational fission --- without actually entering the Roche radius, with potentially significant consequences for the distribution of debris and energy requirements for gravitational scattering in metal-polluted white dwarf planetary systems. This mechanism provides a steady stream of material impacting a white dwarf without rapidly depleting the number of small bodies in the stellar system.
Revised manuscript resubmitted to ApJ after referee report
References in corpus (22)
- The frequency of planetary debris around young white dwarfs
- Foretellings of Ragnarök: World-engulfing Asymptotic Giants and the Inheritance of White Dwarfs
- Hot Jupiters and Cool Stars
- Formation of planetary debris discs around white dwarfs I: Tidal disruption of an extremely eccentric asteroid
- A planetesimal orbiting within the debris disc around a white dwarf star
- Planet Engulfment by ~1.5-3 Solar-Mass Red Giants
- Hydrogen delivery onto white dwarfs from remnant exo-Oort cloud comets
- Tidal Dissipation and Obliquity Evolution in Hot Jupiter Systems
- Planetary engulfment as a trigger for white dwarf pollution
- Tidal dissipation in rotating low-mass stars and implications for the orbital evolution of close-in planets I. From the PMS to the RGB at solar metallicity
- Numerical Simulations of Collisional Cascades at the Roche Limits of White Dwarf Stars
- The orbital evolution of asteroids, pebbles and planets from giant branch stellar radiation and winds
- White dwarf pollution by planets in stellar binaries
- Evaporation and Accretion of Extrasolar Comets Following White Dwarf Kicks
- The Effect of Tides on the Population of PN from Interacting Binaries
- The Fate of Exomoons in White Dwarf Planetary Systems
- Numerical Simulations of Gaseous Disks Generated from Collisional Cascades at the Roche Limits of White Dwarf Stars
- Speeding past planets? Asteroids radiatively propelled by giant branch Yarkovsky effects
- Orbital relaxation and excitation of planets tidally interacting with white dwarfs
- The fast spin of near-Earth asteroid (455213) 2001 OE84, revisited after 14 years: constraints on internal structure
- On the rotational dynamics of Prometheus and Pandora
- The Orbit of Transneptunian Binary Manwë and Thorondor and their Upcoming Mutual Events
Cited by in corpus (16)
- A White Dwarf with Transiting Circumstellar Material Far Outside the Roche Limit
- 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
- The lifetimes of planetary debris discs around white dwarfs
- Post-main-sequence debris from rotation-induced YORP break-up of small bodies II: multiple fissions, internal strengths and binary production
- Constraining the origin of the planetary debris surrounding ZTF J0139+5245 through rotational fission of a triaxial asteroid
- The dynamical history of the evaporating or disrupted ice giant planet around white dwarf WD J0914+1914
- Linking the formation and fate of exo-Kuiper belts within solar system analogues
- Constraining planet formation around 6-8 stars
- 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
- The grain size survival threshold in one-planet post-main-sequence exoplanetary systems
- Planetesimals drifting through dusty and gaseous white dwarf debris discs: Types I, II and III-like migration
- Bivariate Infinite Series Solution of Kepler's Equations
- Gyr-timescale destruction of high-eccentricity asteroids by spin and why 2006 HY51 has been spared
- Chaos over Order: Mapping 3D Rotation of Triaxial Asteroids and Minor Planets