Details of Resonant Structures within a Nice Model Kuiper Belt: Predictions for High-perihelion TNO Detections
Abstract
We analyze a detailed Nice model simulation of Kuiper Belt emplacement from Brasser & Morbidelli, where Neptune undergoes a high-eccentricity phase and migrates outward. In this work, which follows from Pike et al., we specifically focus on the details of structures within Neptune’s mean-motion resonances and in the high-pericenter population of simulated trans-Neptunian objects (TNOs). We find several characteristics of these populations that should be observable in the distant solar system in future large-scale TNO surveys as a diagnostic of whether or not this mode of Neptune migration occurred in the early solar system. We find that the leading asymmetric libration islands of the n:1 resonances are generally much more populated than the trailing islands. We also find the nonresonant high-q population of TNOs should have higher inclinations than the low-q population due to the importance of Kozai cycling during their emplacement histories. Finally, high-q TNOs should be present in roughly equal numbers on either side of distant mean-motion resonances. These predictions contrast with predictions from other Kuiper Belt emplacement simulations and will be testable by upcoming surveys.
- Publication:
-
The Astronomical Journal
- Pub Date:
- October 2017
- DOI:
- 10.3847/1538-3881/aa8b65
- arXiv:
- arXiv:1709.03699
- Bibcode:
- 2017AJ....154..171P
- Keywords:
-
- Kuiper belt: general;
- planets and satellites: dynamical evolution and stability;
- Astrophysics - Earth and Planetary Astrophysics
- E-Print:
- 14 pages, 8 figures, Accepted to AJ