The first study of migration-induced resonances in a pair of Earth-like planets has been performed by Papaloizou & Szuszkiewicz (2005). They concluded that in the case of disparate masses embedded in a disc with the surface density expected for a minimum mass solar nebula at 5.2 au, the most likely resonances are ratios of large integers, such as 8:7. For equal masses, planets tend to enter into the 2:1 or 3:2 resonance. In Papaloizou & Szuszkiewicz (2005) the two low-mass planets have masses equal to 4 Earth masses, chosen to mimic the very well known example of two pulsar planets which are close to the 3:2 resonance. That study has stimulated quite a few interesting questions. One of them is considered here, namely how the ...
Aims. These last years several STIPs (Systems with Tightly packed Inner Planets) in the super-Earth ...
International audienceK2-19 hosts a planetary system composed of two outer planets, b and c, with si...
This paper focuses on two-planet systems in a first-order (q + 1): q mean motion resonance and under...
We investigate orbital resonances expected to arise when a system of two planets, with masses in the...
Abstract. The dynamical interactions that occur in newly formed plan-etary systems may reflect the c...
The differential migration of two planets due to planet-disk interaction can result in capture into ...
Pairs of extrasolar giant planets in a mean motion commensurability are common with 2:1 resonance oc...
A diversity of 2:1 resonance configurations can be expected in extrasolar planetary systems, and the...
At least two multi-planetary systems in a 4:3 mean motion resonance have been found by radial veloci...
Context. Super-Earths can form at large orbital radii and migrate inward due to tidal interactions w...
We present an analytical and numerical study of the orbital migration and resonance capture of ficti...
We investigate how the conditions occurring in a protoplanetary disc may determine the final structu...
We have investigated the evolution of a pair of interacting planets embedded in a gaseous disc consi...
(Abridged) A diversity of 2:1 resonance configurations can be expected in extrasolar planetary syste...
International audienceWe present a numerical study of several two-planet systems based on the motion...
Aims. These last years several STIPs (Systems with Tightly packed Inner Planets) in the super-Earth ...
International audienceK2-19 hosts a planetary system composed of two outer planets, b and c, with si...
This paper focuses on two-planet systems in a first-order (q + 1): q mean motion resonance and under...
We investigate orbital resonances expected to arise when a system of two planets, with masses in the...
Abstract. The dynamical interactions that occur in newly formed plan-etary systems may reflect the c...
The differential migration of two planets due to planet-disk interaction can result in capture into ...
Pairs of extrasolar giant planets in a mean motion commensurability are common with 2:1 resonance oc...
A diversity of 2:1 resonance configurations can be expected in extrasolar planetary systems, and the...
At least two multi-planetary systems in a 4:3 mean motion resonance have been found by radial veloci...
Context. Super-Earths can form at large orbital radii and migrate inward due to tidal interactions w...
We present an analytical and numerical study of the orbital migration and resonance capture of ficti...
We investigate how the conditions occurring in a protoplanetary disc may determine the final structu...
We have investigated the evolution of a pair of interacting planets embedded in a gaseous disc consi...
(Abridged) A diversity of 2:1 resonance configurations can be expected in extrasolar planetary syste...
International audienceWe present a numerical study of several two-planet systems based on the motion...
Aims. These last years several STIPs (Systems with Tightly packed Inner Planets) in the super-Earth ...
International audienceK2-19 hosts a planetary system composed of two outer planets, b and c, with si...
This paper focuses on two-planet systems in a first-order (q + 1): q mean motion resonance and under...