We analyze the formation and evolution of terrestrial-like planets around solar-type stars in the absence of gaseous giants. In particular, we focus on the physical and dynamical properties of those that survive in the system´s Habitable Zone (HZ). This investigation is based on a comparative study between N-body simulations that include fragmentation and others that consider all collisions as perfect mergers.We use an N-body code, presented in a previous paper, that allows planetary fragmentation. We carry out three sets of 24 simulations for 400 Myr. Two sets are developed adopting a model that includes hit-and-run collisions and planetary fragmentation, each one with different values of the individual minimum mass allowed for the fragmen...
Context. In the standard scenario of planet formation, terrestrial planets and the cores of the gian...
Context. According to the latest theoretical and isotopic evidence, Earth’s water content originates...
Context. The effects of planetesimal fragmentation on planet formation has been studied by various m...
Aims. We analyze the formation and evolution of terrestrial-like planets around solar-type stars in ...
The goal of this research is to study how the fragmentation of planetary embryos can affect the phys...
Aims. The goal of this research is to study how the fragmentation of planetary embryos can affect th...
An accurate numerical model of solar system formation requires understanding how planetesimals grow ...
Context. The initial distributions of planetary embryos and planetesimals used in N-body simulations...
Context. The initial distributions of planetary embryos and planetesimals used in N-body simulations...
Context. The initial distributions of planetary embryos and planetesimals used in N-body simulations...
Context. Observational and theoretical studies suggest that there are many and various planetary sys...
In this research, we study the effects of a single giant planet on the dynamical evolution of water-...
The solar system's dynamical state can be explained by an orbital instability among the giant planet...
Context. Observational and theoretical studies suggest that planetary systems consisting only of roc...
The formation and evolution of protoplanetary discs remains a challenge from both a theoretical and ...
Context. In the standard scenario of planet formation, terrestrial planets and the cores of the gian...
Context. According to the latest theoretical and isotopic evidence, Earth’s water content originates...
Context. The effects of planetesimal fragmentation on planet formation has been studied by various m...
Aims. We analyze the formation and evolution of terrestrial-like planets around solar-type stars in ...
The goal of this research is to study how the fragmentation of planetary embryos can affect the phys...
Aims. The goal of this research is to study how the fragmentation of planetary embryos can affect th...
An accurate numerical model of solar system formation requires understanding how planetesimals grow ...
Context. The initial distributions of planetary embryos and planetesimals used in N-body simulations...
Context. The initial distributions of planetary embryos and planetesimals used in N-body simulations...
Context. The initial distributions of planetary embryos and planetesimals used in N-body simulations...
Context. Observational and theoretical studies suggest that there are many and various planetary sys...
In this research, we study the effects of a single giant planet on the dynamical evolution of water-...
The solar system's dynamical state can be explained by an orbital instability among the giant planet...
Context. Observational and theoretical studies suggest that planetary systems consisting only of roc...
The formation and evolution of protoplanetary discs remains a challenge from both a theoretical and ...
Context. In the standard scenario of planet formation, terrestrial planets and the cores of the gian...
Context. According to the latest theoretical and isotopic evidence, Earth’s water content originates...
Context. The effects of planetesimal fragmentation on planet formation has been studied by various m...