Rapid formation of binary asteroid systems post rotational failure: a recipe for making atypically shaped satellites
arXiv:2407.15543 · doi:10.1016/j.icarus.2024.116223
Abstract
Binary asteroid formation is a highly complex process, which has been highlighted with recent observations of satellites with unexpected shapes, such as the oblate Dimorphos by the NASA DART mission and the contact binary Selam by NASA's Lucy mission. There is no clear consensus on which dynamical mechanisms determine the final shape of these objects. In turn, we explore a formation pathway where spin-up and rotational failure of a rubble pile asteroid lead to mass-shedding and a wide circumasteroidal debris disk in which the satellite forms. Using a combination of smooth-particle hydrodynamical and N-body simulations, we study the dynamical evolution in detail. We find that a debris disk containing matter corresponding to a few percent of the primary asteroid mass extending beyond the fluid Roche limit can consistently form both oblate and bilobate satellites via a series of tidal encounters with the primary body and mergers with other gravitational aggregates. Principally, satellites end up prolate (elongated) and on synchronous orbits, accreting mainly in a radial direction while tides from the primary asteroid keep the shape intact. However, close encounters and mergers can break the orbital state, leading to orbital migration and deformation. Satellite-satellite impacts occurring in this regime have lower impact velocities than merger-driven moon formation in e.g. planetary rings, leading to soft impacts between differently sized, non-spherical bodies. The resulting post-merger shape of the satellite is highly dependent on the impact geometry. Only moons having experienced a prior mild or catastrophic tidal disruption during a close encounter with the primary asteroid can become oblate spheroids, which is consistent with the predominantly prolate observed population of binary asteroid satellites.
37 pages, 24 figures, 3 tables. Accepted for publication in Icarus
References in corpus (33)
- Successful Kinetic Impact into an Asteroid for Planetary Defense
- Dynamics of rotationally fissioned asteroids: Source of observed small asteroid systems
- Formation of Regular Satellites from Ancient Massive Rings in the Solar System
- Numerical simulations of impacts involving porous bodies: I. Implementing sub-resolution porosity in a 3D SPH Hydrocode
- Ejecta from the DART-produced active asteroid Dimorphos
- SPH calculations of asteroid disruptions: The role of pressure dependent failure models
- Landslides and Mass Shedding on Spinning Spheroidal Asteroids
- Asteroid pairs: a complex picture
- Long-term & large-scale viscous evolution of dense planetary rings
- Physical properties of asteroid Dimorphos as derived from the DART impact
- Stress and Failure Analysis of Rapidly Rotating Asteroid (29075) 1950 DA
- Coupled Spin and Shape Evolution of Small Rubble-Pile Asteroids: Self-Limitation of the YORP Effect
- The Excited Spin State of Dimorphos Resulting from the DART Impact
- Tidal distortion and disruption of rubble-pile bodies revisited -- Soft-sphere discrete element analyses
- Properties and evolution of NEO families created by tidal disruption at Earth
- Compositions and origins of outer planet systems: Insights from the Roche critical density
- A Contact Binary Satellite of the Asteroid (152830) Dinkinesh
- Constraining surface properties of asteroid (162173) Ryugu from numerical simulations of Hayabusa2 mission impact experiment
- Reshaping and ejection processes on rubble-pile asteroids by impacts
- The role of fragment shapes in the simulations of asteroids as gravitational aggregates
- Direct -body simulations of satellite formation around small asteroids: insights from DART's encounter with the Didymos system
- Accretion of tidally disrupted asteroids onto white dwarfs: direct accretion versus disk processing
- The Dynamical State of the Didymos System Before and After the DART Impact
- A parallel-GPU code for asteroid aggregation problems with angular particles
- Migration and Growth of Protoplanetary Embryos II: Emergence of Proto-Gas-Giants Cores versus Super Earths' Progenitor
- Dynamical Evolution of the Didymos-Dimorphos Binary Asteroid as Rubble Piles following the DART Impact
- Formation of moons and equatorial ridge around top-shaped asteroids after surface landslide
- Lessons learned from NASA's DART impact about disrupting rubble-pile asteroids
- Resonances in non-axisymmetric gravitational potentials
- Dynamics around Non-Spherical Symmetric Bodies: I. The case of a spherical body with mass anomaly
- Promoted Mass Growth of Multiple, Distant Giant Planets through Pebble Accretion and Planet-Planet Collision
- The crater-induced YORP effect
- Dynamical environments of MU69 and similar objects