In this paper we numerically detect the web of three-planet resonances (i.e., resonances among mean anomalies, nodes and perihelia of three planets) with respect to the variation of the semi-major axis of Saturn and Jupiter, in a model including the planets from Jupiter o Neptune. The measure con\ufb01rms the relevance of these resonances in the long-term evolution of the outer Solar System and provides a technique to identify some of the related coef\ufb01cients
This paper presents the second part in our study of the global structure of the planar phase space o...
The first study of migration-induced resonances in a pair of Earth-like planets has been performed ...
We study the effects of planetary late migration on the gas giants ’ obliquities. We consider the pl...
The motion of the giant planets from Jupiter to Neptune is chaotic with Lyapunov time of approximate...
We present a series of dynamical maps for fictitious three-planet systems in initially circular copl...
Context. Planetary resonances are a common dynamical mechanism acting on planetary systems. However,...
International audienceWe present a numerical study of several two-planet systems based on the motion...
accepted by Icarus, November 2007By studying orbits of asteroids potentially in 3:2 exterior mean mo...
Several examples of satellite dynamics are presented where significant progress has been made in und...
8 pages, 8 figures, accepted for publication in Monthly Notices of the Royal Astronomical Society. T...
An ever-growing observational aggregate of extrasolar planets has revealed that systems of planets t...
Aims. These last years several STIPs (Systems with Tightly packed Inner Planets) in the super-Earth ...
International audienceWe present a continuation of our numerical study on planetary systems with sim...
We analyze the distribution of known multi-planet systems ($N \geq 3$) in the plane of mean-motion r...
Orbital systems are often self-organized and/or characterized by harmonic relations. Inspired by mus...
This paper presents the second part in our study of the global structure of the planar phase space o...
The first study of migration-induced resonances in a pair of Earth-like planets has been performed ...
We study the effects of planetary late migration on the gas giants ’ obliquities. We consider the pl...
The motion of the giant planets from Jupiter to Neptune is chaotic with Lyapunov time of approximate...
We present a series of dynamical maps for fictitious three-planet systems in initially circular copl...
Context. Planetary resonances are a common dynamical mechanism acting on planetary systems. However,...
International audienceWe present a numerical study of several two-planet systems based on the motion...
accepted by Icarus, November 2007By studying orbits of asteroids potentially in 3:2 exterior mean mo...
Several examples of satellite dynamics are presented where significant progress has been made in und...
8 pages, 8 figures, accepted for publication in Monthly Notices of the Royal Astronomical Society. T...
An ever-growing observational aggregate of extrasolar planets has revealed that systems of planets t...
Aims. These last years several STIPs (Systems with Tightly packed Inner Planets) in the super-Earth ...
International audienceWe present a continuation of our numerical study on planetary systems with sim...
We analyze the distribution of known multi-planet systems ($N \geq 3$) in the plane of mean-motion r...
Orbital systems are often self-organized and/or characterized by harmonic relations. Inspired by mus...
This paper presents the second part in our study of the global structure of the planar phase space o...
The first study of migration-induced resonances in a pair of Earth-like planets has been performed ...
We study the effects of planetary late migration on the gas giants ’ obliquities. We consider the pl...