International audienceIn some planetary systems, the orbital periods of two of its members present a commensurability, usually known by mean-motion resonance. These resonances greatly enhance the mutual gravitational influence of the planets. As a consequence, these systems present uncommon behaviors, and their motions need to be studied with specific methods. Some features are unique and allow us a better understanding and characterization of these systems. Moreover, mean-motion resonances are a result of an early migration of the orbits in an accretion disk, so it is possible to derive constraints on their formation. Here we review the dynamics of a pair of resonant planets and explain how their orbits evolve in time. We apply our results...
Context. Orbital mean motion resonances in planetary systems originate from dissipative processes in...
Context. Among multi-planet planetary systems there are a large fraction of resonant systems. Studyi...
This paper considers the effects of turbulence on mean motion resonances in extrasolar planetary sys...
International audienceIn some planetary systems, the orbital periods of two of its members present a...
In some planetary systems, the orbital periods of two of its members present a commensurability, usu...
Pairs of extrasolar giant planets in a mean motion commensurability are common with 2:1 resonance oc...
Abstract. The dynamical interactions that occur in newly formed plan-etary systems may reflect the c...
An ever-growing observational aggregate of extrasolar planets has revealed that systems of planets t...
This paper focuses on two-planet systems in a first-order (q + 1): q mean motion resonance and under...
© The Author(s) 2012. This article is published with open access at Springerlink.com Abstract The re...
An ever-growing observational aggregate of extrasolar planets has revealed that systems of planets t...
We investigate orbital resonances expected to arise when a system of two planets, with masses in the...
The recently discovered planetary system HD 45364, which consists of a Jupiter and Saturn-mass plane...
Capture into mean motion resonance (MMR) is an important dynamical mechanism because it shapes the f...
We present a numerical study of several two-planet systems based on the motions of Jupiter and Satur...
Context. Orbital mean motion resonances in planetary systems originate from dissipative processes in...
Context. Among multi-planet planetary systems there are a large fraction of resonant systems. Studyi...
This paper considers the effects of turbulence on mean motion resonances in extrasolar planetary sys...
International audienceIn some planetary systems, the orbital periods of two of its members present a...
In some planetary systems, the orbital periods of two of its members present a commensurability, usu...
Pairs of extrasolar giant planets in a mean motion commensurability are common with 2:1 resonance oc...
Abstract. The dynamical interactions that occur in newly formed plan-etary systems may reflect the c...
An ever-growing observational aggregate of extrasolar planets has revealed that systems of planets t...
This paper focuses on two-planet systems in a first-order (q + 1): q mean motion resonance and under...
© The Author(s) 2012. This article is published with open access at Springerlink.com Abstract The re...
An ever-growing observational aggregate of extrasolar planets has revealed that systems of planets t...
We investigate orbital resonances expected to arise when a system of two planets, with masses in the...
The recently discovered planetary system HD 45364, which consists of a Jupiter and Saturn-mass plane...
Capture into mean motion resonance (MMR) is an important dynamical mechanism because it shapes the f...
We present a numerical study of several two-planet systems based on the motions of Jupiter and Satur...
Context. Orbital mean motion resonances in planetary systems originate from dissipative processes in...
Context. Among multi-planet planetary systems there are a large fraction of resonant systems. Studyi...
This paper considers the effects of turbulence on mean motion resonances in extrasolar planetary sys...