English

A Dynamical Solution of the Triple Asteroid System (45) Eugenia

Earth and Planetary Astrophysics 2010-08-13 v1

Abstract

We present the first dynamical solution of the triple asteroid system (45) Eugenia and its two moons Petit-Prince (Diameter~7 km) and S/2004 (45) 1 (Diameter~5 km). The two moons orbit at 1165 and 610 km from the primary, describing an almost-circular orbit (e~6x10-3 and e~7x10-2 respectively). The system is quite different from the other known triple systems in the main belt since the inclinations of the moon orbits are sizeable (9 deg and 18 deg with respect to the equator of the primary respectively). No resonances, neither secular nor due to Lidov-Kozai mechanism, were detected in our dynamical solution, suggesting that these inclinations are not due to excitation modes between the primary and the moons. A 10-year evolution study shows that the orbits are slightly affected by perturbations from the Sun, and to a lesser extent by mutual interactions between the moons. The estimated J2 of the primary is three times lower than the theoretical one, calculated assuming the shape of the primary and an homogeneous interior, possibly suggesting the importance of other gravitational harmonics.

Keywords

Cite

@article{arxiv.1008.2164,
  title  = {A Dynamical Solution of the Triple Asteroid System (45) Eugenia},
  author = {F. Marchis and V. Lainey and P. Descamps and J. Berthier and M. Van Dam and I. de Pater and B. Macomber and M. Baek and D. Le Mignant and H. B. Hammel and M. Showalter and F. Vachier},
  journal= {arXiv preprint arXiv:1008.2164},
  year   = {2010}
}

Comments

38 pages, 5 Tables, 5 Figures, revised for Icarus Journal

R2 v1 2026-06-21T16:00:07.114Z