Context. Recent studies have analyzed the dynamical evolution of outer small body populations under the effects of an eccentric inner massive perturber, which result from a planetary scattering event. These investigations suggest that such outer reservoirs are composed of particles on prograde and retrograde orbits, as well as particles whose orbit flips from prograde to retrograde and back again showing a coupling between the inclination i and the ascending node longitude Ω (Type-F particles). Aims. We analyze the role of the general relativity (GR) on the dynamics of outer particles under the influence of an inner eccentric Jupiter-mass planet produced by a planetary scattering event. In particular, we are interested in studying how the G...
Aims. We investigate the long-term evolution of inclined test particles representing a small Earth-l...
Context. The discovery of distant trans-Neptunian objects has led to heated discussions about the st...
We study nodal librations of outer particles in the framework of the elliptical restricted three-bod...
Context. Recent studies have analyzed the dynamical evolution of outer small body populations under ...
Aims. We analyze the dynamics of small body reservoirs under the effects of an eccentric inner giant...
Aims. We analyze the dynamics of small body reservoirs under the effects of an eccentric inner giant...
The secular approximation of the hierarchical three body systems has been proven to be very useful i...
We study how close-in systems such as those detected by Kepler are affected by the dynamics of bodie...
Context. Planet–planet (P–P) scattering is an efficient and robust dynamical mechanism for producing...
Aims. Evidence of mutually inclined planetary orbits has been reported for giant planets in recent y...
International audienceABSTRACT The distribution of eccentricities of warm giant exoplanets is common...
Observations of the population of cold Jupiter planets (r >1 AU) show that nearly all of these plane...
International audienceIn a recent paper we proposed that the giant planets' primordial orbits may ha...
Context: The formation of resonant planet pairs in exoplanetary systems involves planetary migration...
Aims. We investigate the long-term evolution of inclined test particles representing a small Earth-l...
Context. The discovery of distant trans-Neptunian objects has led to heated discussions about the st...
We study nodal librations of outer particles in the framework of the elliptical restricted three-bod...
Context. Recent studies have analyzed the dynamical evolution of outer small body populations under ...
Aims. We analyze the dynamics of small body reservoirs under the effects of an eccentric inner giant...
Aims. We analyze the dynamics of small body reservoirs under the effects of an eccentric inner giant...
The secular approximation of the hierarchical three body systems has been proven to be very useful i...
We study how close-in systems such as those detected by Kepler are affected by the dynamics of bodie...
Context. Planet–planet (P–P) scattering is an efficient and robust dynamical mechanism for producing...
Aims. Evidence of mutually inclined planetary orbits has been reported for giant planets in recent y...
International audienceABSTRACT The distribution of eccentricities of warm giant exoplanets is common...
Observations of the population of cold Jupiter planets (r >1 AU) show that nearly all of these plane...
International audienceIn a recent paper we proposed that the giant planets' primordial orbits may ha...
Context: The formation of resonant planet pairs in exoplanetary systems involves planetary migration...
Aims. We investigate the long-term evolution of inclined test particles representing a small Earth-l...
Context. The discovery of distant trans-Neptunian objects has led to heated discussions about the st...
We study nodal librations of outer particles in the framework of the elliptical restricted three-bod...