Irregular Fixation II: The orbits of irregular satellites

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1. Verfasser: Grishin, Evgeni
Format: Preprint
Veröffentlicht: 2024
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author Grishin, Evgeni
author_facet Grishin, Evgeni
contents Irregular satellites (IS) are believed to have been captured during the Solar system's dynamical history and provide clues for the Solar system's formation and evolution. IS occupy a large fraction of the Hill sphere of their host planet and their orbits are highly perturbed by the Sun. We use a novel formalism developed in paper I to characterise their orbits in terms of an effective secular Hamiltonian (the Brown Hamiltonian) that accounts for their large orbital separations. We find that prograde satellites generally follow the Brown Hamiltonian, while retrograde satellites (which extend further) deviate more significantly. Nevertheless, the phase portrait is much better described by the Brown Hamiltonian for all satellites. We construct a semi-analytic criterion that predicts the librating orbit based on the effective energy due to the Brown Hamiltonian. We also check our results with highly accurate N-body integrations of satellite orbits, where initial conditions are loaded directly from the updated ephemeris from the NASA Horizons database. Although the retrograde librating orbits occupy more area in the parameter space, the vast majority of librating IS are prograde. Using our method we find $13$ librating satellites, $8$ of them previously known to librate, and the rest shown to librate for the first time. Further observations of existing and new satellites could shed more light on the dynamical history of the Solar system and satellite formation and test our results.
format Preprint
id arxiv_https___arxiv_org_abs_2407_05123
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Irregular Fixation II: The orbits of irregular satellites
Grishin, Evgeni
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
Dynamical Systems
Irregular satellites (IS) are believed to have been captured during the Solar system's dynamical history and provide clues for the Solar system's formation and evolution. IS occupy a large fraction of the Hill sphere of their host planet and their orbits are highly perturbed by the Sun. We use a novel formalism developed in paper I to characterise their orbits in terms of an effective secular Hamiltonian (the Brown Hamiltonian) that accounts for their large orbital separations. We find that prograde satellites generally follow the Brown Hamiltonian, while retrograde satellites (which extend further) deviate more significantly. Nevertheless, the phase portrait is much better described by the Brown Hamiltonian for all satellites. We construct a semi-analytic criterion that predicts the librating orbit based on the effective energy due to the Brown Hamiltonian. We also check our results with highly accurate N-body integrations of satellite orbits, where initial conditions are loaded directly from the updated ephemeris from the NASA Horizons database. Although the retrograde librating orbits occupy more area in the parameter space, the vast majority of librating IS are prograde. Using our method we find $13$ librating satellites, $8$ of them previously known to librate, and the rest shown to librate for the first time. Further observations of existing and new satellites could shed more light on the dynamical history of the Solar system and satellite formation and test our results.
title Irregular Fixation II: The orbits of irregular satellites
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
Dynamical Systems
url https://arxiv.org/abs/2407.05123