The motion of two planets around a Sun-like star under the combined effects of mutual interaction and tidal dissipation is investigated. The secular behaviour of the system is analysed using two different approaches. First, we solve the exact equations of motion through the numerical simulation of the system evolution. In addition to the orbital decay and circularization, we show that the final configuration of the system is affected by the shrinking of the inner orbit. Our second approach consists of the analysis of the stationary solutions of mean equations of motion based on a Hamiltonian formalism. We consider the case of a hot super-Earth planet with a more massive outer companion. As a real example, the CoRoT-7 system is analysed, sol...
Since the first discovery of an extrasolar planet around a solar-type star, observers have detected ...
Strong tidal interaction with the central star can circularize the orbits of close-in planets. With ...
We investigate the secular dynamics of two-planet coplanar systems evolving under mutual gravitation...
We investigate the motion of a two-planet coplanar system under the combined effects of mutual inter...
Recent observations have shown that at least some close-in exoplanets maintain eccentric orbits desp...
Recent discoveries of several transiting planetswith clearly non-zero eccentricities and some large ...
In this paper, we study the behavior of a pair of co-orbital planets, both orbiting a central star o...
We analyze the long-term tidal evolution of a single-planet system through the use of numerical simu...
Close-in co-orbital planets (in a 1:1 mean motion resonance) can experience strong tidal interaction...
International audienceThe continuous action of tides modify the rotation of close-in planets togethe...
This paper studies the long term evolution of planetary systems containing short-period planets, inc...
Context. Tidal interactions and planetary evaporation processes impact the evolution of close-in sta...
Abstract: We study orbital evolution of multi-planet systems that form a resonant chain, with neares...
We investigate the possibility that the large orbital eccentricity of the transiting Neptune-mass pl...
We study the orbital evolution of a two co-orbital planet system which undergo tidal interactions wi...
Since the first discovery of an extrasolar planet around a solar-type star, observers have detected ...
Strong tidal interaction with the central star can circularize the orbits of close-in planets. With ...
We investigate the secular dynamics of two-planet coplanar systems evolving under mutual gravitation...
We investigate the motion of a two-planet coplanar system under the combined effects of mutual inter...
Recent observations have shown that at least some close-in exoplanets maintain eccentric orbits desp...
Recent discoveries of several transiting planetswith clearly non-zero eccentricities and some large ...
In this paper, we study the behavior of a pair of co-orbital planets, both orbiting a central star o...
We analyze the long-term tidal evolution of a single-planet system through the use of numerical simu...
Close-in co-orbital planets (in a 1:1 mean motion resonance) can experience strong tidal interaction...
International audienceThe continuous action of tides modify the rotation of close-in planets togethe...
This paper studies the long term evolution of planetary systems containing short-period planets, inc...
Context. Tidal interactions and planetary evaporation processes impact the evolution of close-in sta...
Abstract: We study orbital evolution of multi-planet systems that form a resonant chain, with neares...
We investigate the possibility that the large orbital eccentricity of the transiting Neptune-mass pl...
We study the orbital evolution of a two co-orbital planet system which undergo tidal interactions wi...
Since the first discovery of an extrasolar planet around a solar-type star, observers have detected ...
Strong tidal interaction with the central star can circularize the orbits of close-in planets. With ...
We investigate the secular dynamics of two-planet coplanar systems evolving under mutual gravitation...