The Dynamics of Neptune Trojan: I. the Inclined Orbits
arXiv:0906.5075 · doi:10.1111/j.1365-2966.2009.15203.x
Abstract
The stability of Trojan type orbits around Neptune is studied. As the first part of our investigation, we present in this paper a global view of the stability of Trojans on inclined orbits. Using the frequency analysis method based on the FFT technique, we construct high resolution dynamical maps on the plane of initial semimajor axis versus inclination . These maps show three most stable regions, with in the range of and respectively, where the Trojans are most probably expected to be found. The similarity between the maps for the leading and trailing triangular Lagrange points and confirms the dynamical symmetry between these two points. By computing the power spectrum and the proper frequencies of the Trojan motion, we figure out the mechanisms that trigger chaos in the motion. The Kozai resonance found at high inclination varies the eccentricity and inclination of orbits, while the secular resonance around pumps up the eccentricity. Both mechanisms lead to eccentric orbits and encounters with Uranus that introduce strong perturbation and drive the objects away from the Trojan like orbits. This explains the clearance of Trojan at high inclination () and an unstable gap around on the dynamical map. An empirical theory is derived from the numerical results, with which the main secular resonances are located on the initial plane of . The fine structures in the dynamical maps can be explained by these secular resonances.
12 pages, 11 figures, accepted by Mon. Not. R.A.S
Cited by in corpus (26)
- Origin and Dynamical Evolution of Neptune Trojans - II: Long Term Evolution
- 2001 QR322: a dynamically unstable Neptune Trojan?
- The Intrinsic Neptune Trojan Orbit Distribution: Implications for the Primordial Disk and Planet Migration
- The orbit of 2010 TK7. Possible regions of stability for other Earth Trojan asteroids
- Orbital Stability of Earth Trojans
- 2008 LC18: a potentially unstable Neptune Trojan
- The dynamical evolution of dwarf planet (136108) Haumea's collisional family: General properties and implications for the trans-Neptunian belt
- Application of chaos indicators in the study of dynamics of S-type extrasolar planets in stellar binaries
- Where are the Uranus Trojans?
- (309239) 2007 RW10: a large temporary quasi-satellite of Neptune
- The Pan-STARRS 1 Discoveries of five new Neptune Trojans
- Four temporary Neptune co-orbitals: (148975) 2001 XA255, (310071) 2010 KR59, (316179) 2010 EN65, and 2012 GX17
- OSSOS: The Eccentricity and Inclination Distributions of the Stable Neptunian Trojans
- Coorbital Satellites of Saturn: Congenital Formation
- Trailing (L5) Neptune Trojans: 2004 KV18 and 2008 LC18
- A systematic survey of the dynamics of Uranus Trojans
- Dynamics of charged dust in the orbit of Venus
- Formation and Dynamical Evolution of the Neptune Trojans - the Influence of the Initial Solar System Architecture
- The effect of orbital damping during planet migration on the Inclination and Eccentricity Distributions of Neptune Trojans
- Stability and secondary resonances in the spatial restricted three-body problem for small mass ratios
- The structure of the co-orbital stable regions as a function of the mass ratio
- Dynamics of Neptune's Trojans: II. Eccentric orbits and observed ones
- Stability of librational motion in the spatial circular restricted three-body problem for high inclinations and mass ratios
- The Formation of Habitable Planets in the Four-Planet System HD 141399
- Secular Structure of 1:2 and 1:3 Resonances with Neptune
- Trojan asteroids and co-orbital dust ring of Venus