Commensurabilities between ETNOs: a Monte Carlo survey
arXiv:1604.05881 · doi:10.1093/mnrasl/slw077
Abstract
Many asteroids in the main and trans-Neptunian belts are trapped in mean motion resonances with Jupiter and Neptune, respectively. As a side effect, they experience accidental commensurabilities among themselves. These commensurabilities define characteristic patterns that can be used to trace the source of the observed resonant behaviour. Here, we explore systematically the existence of commensurabilities between the known ETNOs using their heliocentric and barycentric semimajor axes, their uncertainties, and Monte Carlo techniques. We find that the commensurability patterns present in the known ETNO population resemble those found in the main and trans-Neptunian belts. Although based on small number statistics, such patterns can only be properly explained if most, if not all, of the known ETNOs are subjected to the resonant gravitational perturbations of yet undetected trans-Plutonian planets. We show explicitly that some of the statistically significant commensurabilities are compatible with the Planet Nine hypothesis; in particular, a number of objects may be trapped in the 5:3 and 3:1 mean motion resonances with a putative Planet Nine with semimajor axis of about 700 au.
5 pages, 3 figures, 2 tables. Revised to match version published in MNRAS: Letters
References in corpus (7)
- Evidence for a Distant Giant Planet in the Solar System
- Extreme trans-Neptunian objects and the Kozai mechanism: signalling the presence of trans-Plutonian planets
- Corralling a distant planet with extreme resonant Kuiper belt objects
- The Fate of Scattered Planets
- Formation of Super-Earth Mass Planets at 125-250 AU from a Solar-type Star
- Flipping minor bodies: what comet 96P/Machholz 1 can tell us about the orbital evolution of extreme trans-Neptunian objects and the production of near-Earth objects on retrograde orbits
- Finding Planet Nine: a Monte Carlo approach
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- Preliminary constraints on the location of the recently hypothesized new planet of the Solar System from planetary orbital dynamics
- Finding Planet Nine: apsidal anti-alignment Monte Carlo results
- Evidence for a possible bimodal distribution of the nodal distances of the extreme trans-Neptunian objects: avoiding a trans-Plutonian planet or just plain bias?
- Binary stripping as a plausible origin of correlated pairs of extreme trans-Neptunian objects
- Game of Orbits: A Gaming Approach to Neptune's Discovery