We present N-body simulations of planetary system formation in thermally-evolving, viscous disc models. The simulations incorporate type I migration (including corota-tion torques and their saturation), gap formation, type II migration, gas accretion onto planetary cores, and gas disc dispersal through photoevaporation. The aim is to exam-ine whether or not the oligarchic growth scenario, when combined with self-consistent disc models and up-to-date prescriptions for disc-driven migration, can produce plan-etary systems similar to those that have been observed. The results correlate with the initial disc mass. Low mass discs form close-packed systems of terrestrial-mass planets and super-Earths. Higher mass discs form multiple generations o...
Context. According to the sequential accretion model (or core-nucleated accretion model), giant plan...
Context. According to the sequential accretion model (or core nucleated accretion model), giant plan...
Context. Rapid gas accretion onto gas giants requires the prior formation of ~ 10 M⊕ cores, and thi...
GALC acknowledges the support of an STFC PhD studentship. The simulations presented in this paper we...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
Previous simulations of planet formation utilizing single bodies including pebble accretion and plan...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
International audiencePrevious simulations of planet formation utilizing single bodies including peb...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
International audienceGiant planets migrate though the protoplanetary disc as they grow. We investig...
International audienceGiant planets migrate though the protoplanetary disc as they grow. We investig...
Giant planets migrate though the protoplanetary disc as they grow. We investigate how the formation ...
Context. According to the sequential accretion model (or core-nucleated accretion model), giant plan...
Context. According to the sequential accretion model (or core-nucleated accretion model), giant plan...
Context. According to the sequential accretion model (or core nucleated accretion model), giant plan...
Context. Rapid gas accretion onto gas giants requires the prior formation of ~ 10 M⊕ cores, and thi...
GALC acknowledges the support of an STFC PhD studentship. The simulations presented in this paper we...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
Previous simulations of planet formation utilizing single bodies including pebble accretion and plan...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
International audiencePrevious simulations of planet formation utilizing single bodies including peb...
Giant planets migrate though the protoplanetary disc as they grow their solid core and attract their...
International audienceGiant planets migrate though the protoplanetary disc as they grow. We investig...
International audienceGiant planets migrate though the protoplanetary disc as they grow. We investig...
Giant planets migrate though the protoplanetary disc as they grow. We investigate how the formation ...
Context. According to the sequential accretion model (or core-nucleated accretion model), giant plan...
Context. According to the sequential accretion model (or core-nucleated accretion model), giant plan...
Context. According to the sequential accretion model (or core nucleated accretion model), giant plan...
Context. Rapid gas accretion onto gas giants requires the prior formation of ~ 10 M⊕ cores, and thi...