One of the most interesting features in the libration domain of co-orbital motions is the existence of secondary resonances. For some combinations of physical parameters, these resonances occupy a large fraction of the domain of stability and rule the dynamics within the stable tadpole region. In this work, we present an application of a recently introduced ‘basic Hamiltonian model’ Hb for Trojan dynamics (Páez and Efthymiopoulos in Celest Mech Dyn Astron 121(2):139, 2015; Páez et al. in Celest Mech Dyn Astron 126:519, 2016): we show that the inner border of the secondary resonance of lowermost order, as defined by Hb, provides a good estimation of the region in phase space for which the orbits remain regular regardless of the orbital param...
The study of the Trojan problem (i.e. the motion in the vicinity of the equilateral Lagrangian point...
We have investigated the possible role of secular resonances in the dynamical evolution of Trojans d...
International audienceCo-orbital planets (in a 1: 1 mean motion resonance) can be formed within a La...
A number of studies, referring to the observed Trojan asteroids of various planets in our Solar Syst...
The main subject of this work is the study of the problem of the Trojan orbits from a perturbative H...
We have numerically explored the mechanisms that destabilize Jupiter's Trojan orbits outside the sta...
The possibility that giant extrasolar planets could have small Trojan co-orbital companions has been...
Context. The stability of satellites in the solar system is affected by the so-called evection reson...
In the early phase of the Solar system evolution, while the outer planets migrated due to their inte...
We study the resonant dynamics in a simple one degree of freedom, time dependent Hamiltonian model d...
The only discovery of Earth Trojan 2010 TK7 and the subsequent launch of OSIRIS-REx have motived us ...
We use the frequency map analysis method to identify for Trojan orbits of Saturn the regions in the ...
International audienceWe study the global dynamics of the jovian Trojan asteroids by means of the fr...
Context. Planetary resonances are a common dynamical mechanism acting on planetary systems. However,...
The study of the Trojan problem (i.e. the motion in the vicinity of the equilateral Lagrangian point...
We have investigated the possible role of secular resonances in the dynamical evolution of Trojans d...
International audienceCo-orbital planets (in a 1: 1 mean motion resonance) can be formed within a La...
A number of studies, referring to the observed Trojan asteroids of various planets in our Solar Syst...
The main subject of this work is the study of the problem of the Trojan orbits from a perturbative H...
We have numerically explored the mechanisms that destabilize Jupiter's Trojan orbits outside the sta...
The possibility that giant extrasolar planets could have small Trojan co-orbital companions has been...
Context. The stability of satellites in the solar system is affected by the so-called evection reson...
In the early phase of the Solar system evolution, while the outer planets migrated due to their inte...
We study the resonant dynamics in a simple one degree of freedom, time dependent Hamiltonian model d...
The only discovery of Earth Trojan 2010 TK7 and the subsequent launch of OSIRIS-REx have motived us ...
We use the frequency map analysis method to identify for Trojan orbits of Saturn the regions in the ...
International audienceWe study the global dynamics of the jovian Trojan asteroids by means of the fr...
Context. Planetary resonances are a common dynamical mechanism acting on planetary systems. However,...
The study of the Trojan problem (i.e. the motion in the vicinity of the equilateral Lagrangian point...
We have investigated the possible role of secular resonances in the dynamical evolution of Trojans d...
International audienceCo-orbital planets (in a 1: 1 mean motion resonance) can be formed within a La...