Nearly 15%-20% of solar type stars contain one or more gas giant planets. According to the core-accretion scenario, the acquisition of their gaseous envelope must be preceded by the formation of super-critical cores with masses 10 times or larger than that of the Earth. It is natural to link the formation probability of gas giant planets with the supply of gases and solids in their natal disks. However, a much richer population of super Earths suggests that (1) there is no shortage of planetary building block material, (2) a gas giant's growth barrier is probably associated with whether it can merge into super-critical cores, and (3) super Earths are probably failed cores that did not attain sufficient mass to initiate efficient accret...
We present N-body simulations of planetary system formation in thermally-evolving, viscous disc mode...
Previous simulations of planet formation utilizing single bodies including pebble accretion and plan...
This is a simulation of the process of formation for a planetary system with close-in super-Earths. ...
According to the core-accretion scenario, planets form in protostellar disks through the condensatio...
Radial velocity and transit surveys have found that the fraction of FGKM stars with close-in super-E...
Context. Rapid gas accretion onto gas giants requires the prior formation of ~ 10 M⊕ cores, and thi...
In a further development of a deterministic planet formation model (Ida & Lin), we consider the ...
Radial velocity and transit surveys have found that the fraction of FGKM stars with close-in super-E...
Radial velocity and transit surveys indicate that solar-type stars bear super-Earths, with masses up...
International audiencePlanetary embryos embedded in gaseous protoplanetary disks undergo Type I orbi...
Context. A large fraction of stars host one or multiple close-in super-Earth planets. There is an ac...
Planetary embryos embedded in gaseous protoplanetary disks undergo Type I orbital migratio...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
International audienceEarth-mass bodies are expected to undergo Type I migration directed either inw...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
We present N-body simulations of planetary system formation in thermally-evolving, viscous disc mode...
Previous simulations of planet formation utilizing single bodies including pebble accretion and plan...
This is a simulation of the process of formation for a planetary system with close-in super-Earths. ...
According to the core-accretion scenario, planets form in protostellar disks through the condensatio...
Radial velocity and transit surveys have found that the fraction of FGKM stars with close-in super-E...
Context. Rapid gas accretion onto gas giants requires the prior formation of ~ 10 M⊕ cores, and thi...
In a further development of a deterministic planet formation model (Ida & Lin), we consider the ...
Radial velocity and transit surveys have found that the fraction of FGKM stars with close-in super-E...
Radial velocity and transit surveys indicate that solar-type stars bear super-Earths, with masses up...
International audiencePlanetary embryos embedded in gaseous protoplanetary disks undergo Type I orbi...
Context. A large fraction of stars host one or multiple close-in super-Earth planets. There is an ac...
Planetary embryos embedded in gaseous protoplanetary disks undergo Type I orbital migratio...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
International audienceEarth-mass bodies are expected to undergo Type I migration directed either inw...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
We present N-body simulations of planetary system formation in thermally-evolving, viscous disc mode...
Previous simulations of planet formation utilizing single bodies including pebble accretion and plan...
This is a simulation of the process of formation for a planetary system with close-in super-Earths. ...