Planetary Chaos and the (In)stability of Hungaria Asteroids
arXiv:1704.05552 · doi:10.1016/j.icarus.2017.04.015
Abstract
The Hungaria asteroid group is located interior to the main asteroid belt, with semimajor axes between 1.8 and 2 AU, low eccentricities and inclinations of 16-35 degrees. Recently, it has been proposed that Hungaria asteroids are a secularly declining population that may be related to the Late Heavy Bombardment (LHB) impactors (Ćuk et al. 2012, Bottke et al. 2012). While Ćuk et al. (2012) and Bottke et al. (2012) have reproduced a Hungaria-like population that declined exponentially, the real Hungarias were never confirmed to be unstable to the same degree. Here we find that the stability of Hungarias is strongly dependent on the evolution of the eccentricity of Mars, which is chaotic and unpredictable on Gyr timescales. We find that the high Martian eccentricity chiefly affects Hungarias through close approaches with Mars, rather than planetary secular modes. However, current minimum perihelia of Hungarias (over Myr timescales) are not diagnostic of their long-term stability due to a number of secular and mean motion resonances affecting the Hungaria region (Milani et al. 2010). We conclude that planetary chaos makes it impossible to determine the effective lifetimes of observed Hungarias. Furthermore, long-term changes of Martian eccentricity could lead to variable Hungaria loss over time. We speculate that some of the most stable Hungarias may have been placed in their present orbit when the eccentricity of Mars was significantly higher than today.
Accepted for Icarus special issue on asteroids
References in corpus (6)
- Chaotic diffusion in the Solar System
- The Dynamical Evolution of the Asteroid Belt
- Modeling the Historical Flux of Planetary Impactors
- Hungaria Asteroid Family as the Source of Aubrite Meteorites
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Cited by in corpus (5)
- Mars Obliquity History Constrained by Elliptic Crater Orientations
- Modeling the chronologies and size distributions of Ceres and Vesta craters
- Dynamic portrait of the region occupied by the Hungaria Asteroids: The influence of Mars
- Chaotic diffusion of asteroids in the exterior 1:2 mean motion resonance with Mars
- A survey on Hungaria asteroids involved in mean motion resonances with Mars