Asteroid families in the first order resonances with Jupiter
arXiv:1104.4004 · doi:10.1111/j.1365-2966.2008.13764.x
Abstract
Asteroids residing in the first-order mean motion resonances with Jupiter hold important information about the processes that set the final architecture of giant planets. Here we revise current populations of objects in the J2/1 (Hecuba-gap group), J3/2 (Hilda group) and J4/3 (Thule group) resonances. The number of multi-opposition asteroids found is 274 for J2/1, 1197 for J3/2 and 3 for J4/3. Using both hierarchical clustering technique and colour identification we characterise a collisionally-born asteroid family around the object (1911) Schubart in the J3/2 resonance. There is also a looser cluster around the largest asteroid (153) Hilda. Using N-body numerical simulations we prove that the Yarkovsky effect (infrared thermal emission from the surface of asteroids) causes a systematic drift in eccentricity for resonant asteroids, while their semimajor axis is almost fixed due to the strong coupling with Jupiter. This is a different mechanism from main belt families, where the Yarkovsky drift affects basically the semimajor axis. We use the eccentricity evolution to determine the following ages: (1.7+-0.7) Gyr for the Schubart family and >~4 Gyr for the Hilda family. We also find that collisionally-born clusters in the J2/1 resonance would efficiently dynamically disperse. The steep size distribution of the stable population inside this resonance could thus make sense if most of these bodies are fragments from an event older than ~1 Gyr. Finally, we test stability of resonant populations during Jupiter's and Saturn's crossing of their mutual mean motion resonances. In particular we find primordial objects in the J3/2 resonance were efficiently removed from their orbits when Jupiter and Saturn crossed their 1:2 mean motion resonance.
References in corpus (2)
Cited by in corpus (26)
- Main-Belt Comet P/2008 R1 (Garradd)
- Extreme trans-Neptunian objects and the Kozai mechanism: signalling the presence of trans-Plutonian planets
- On the Ages of Resonant, Eroded and Fossil Asteroid Families
- Solar System Physics for Exoplanet Research
- Asteroid Families: properties, recent advances and future opportunities
- P/2006 VW139: A Main-Belt Comet Born in an Asteroid Collision?
- Linking long-term planetary -body simulations with periodic orbits: application to white dwarf pollution
- Investigation of the asteroid-neutron star collision model for the repeating fast radio bursts
- Yarkovsky-Driven Spreading of the Eureka Family of Mars Trojans
- Stability of Jovian Trojans and their collisional families
- Asteroid impacts on terrestrial planets: The effects of super-Earths and the role of the resonance
- Rotational properties of Hilda asteroids observed by the K2 mission
- Recent collisional jet from a primitive asteroid
- Periodic activity from fast radio burst FRB180916 explained in the frameof the orbiting asteroid model
- On the orbital evolution of 2020 AV2, the first asteroid ever observed to go around the Sun inside the orbit of Venus
- A comparative analysis of the outer-belt primitive families
- Identifying the population of stable resonant asteroids using large databases
- Homing in for New Year: impact parameters and pre-impact orbital evolution of meteoroid 2014 AA
- Transit of asteroids across the 7/3 Kirkwood gap under the Yarkovsky effect
- Photometric Confirmation and Characterization of the Ennomos Collisional Family in the Jupiter Trojans
- A Crater Chronology for the Jupiter's Asteroids
- Collisional study of Hilda and quasi-Hilda asteroids
- A thermophysical and dynamical study of the Hildas (1162) Larissa and (1911) Schubart
- Recent arrivals to the main asteroid belt
- Near-infrared spectroscopic characterization of the Pallas family
- Rotational Light-curve Recovery and Predictions of the LSST Yield of Hildas