We study the thermodynamical conditions existing in the Uranian subnebula from which the regular satellites were presumably formed, assuming it was produced by an earth-sized body impact on proto-Uranus (Stevenson [CITE]; Slattery et al. [CITE]). Two evolutionary turbulent models of the Uranian subnebula are constructed. Both are derived from the solar nebula analytical model of Dubrulle ([CITE]) and Drouart et al. ([CITE]). Each model provides a distinct chemical composition which depends on the assumed origin of the subdisk's material (proto-Uranus or impactor ejected material). Moreover, the evolution of the chemistry of C and N compounds is examined in order to assess the nature of major volatiles trapped into the ices of regu...
We present an evolutionary turbulent model of the Saturn's subnebula consistent with recent core ac...
The low luminosity of Uranus is a long-standing challenge in planetary science. Simple adiabatic mod...
The formation mechanisms of the ice giants Uranus and Neptune, and the origin of their elemental and...
We use an evolutionary turbulent model of Jupiter’s subnebula to constrain the composition of ices i...
We have elaborated an evolutionary turbulent model of the sub-nebula of Saturn derived from that of ...
We use the evolutionary turbulent model of Jupiter's subnebula described by Alibert et al. (2005a) t...
Abstract. We have developed an evolutionary turbulent model of the Jovian subnebula consistent with ...
We use an evolutionary turbulent model of Jupiter's subnebula to constrain the composition of ices i...
We aim at investigating whether the chemical composition of the outer region of the protosolar nebul...
We present an evolutionary turbulent model of the Saturn’s subnebula consistent with recent core acc...
Context. Solar and extrasolar comets and extrasolar planets are the subject of numerous st...
Abstract: The structure and composition of planets, small bodies of the Solar system is essentially ...
Large icy exomoons may represent a ubiquitous habitable environment yet remain on the fringes of det...
We model the subnebulae of Jupiter and Saturn wherein satellite accretion took place. We expect each...
ABSTRACT Using the density and temperature proÐles resulting from a two-dimensional turbulent model ...
We present an evolutionary turbulent model of the Saturn's subnebula consistent with recent core ac...
The low luminosity of Uranus is a long-standing challenge in planetary science. Simple adiabatic mod...
The formation mechanisms of the ice giants Uranus and Neptune, and the origin of their elemental and...
We use an evolutionary turbulent model of Jupiter’s subnebula to constrain the composition of ices i...
We have elaborated an evolutionary turbulent model of the sub-nebula of Saturn derived from that of ...
We use the evolutionary turbulent model of Jupiter's subnebula described by Alibert et al. (2005a) t...
Abstract. We have developed an evolutionary turbulent model of the Jovian subnebula consistent with ...
We use an evolutionary turbulent model of Jupiter's subnebula to constrain the composition of ices i...
We aim at investigating whether the chemical composition of the outer region of the protosolar nebul...
We present an evolutionary turbulent model of the Saturn’s subnebula consistent with recent core acc...
Context. Solar and extrasolar comets and extrasolar planets are the subject of numerous st...
Abstract: The structure and composition of planets, small bodies of the Solar system is essentially ...
Large icy exomoons may represent a ubiquitous habitable environment yet remain on the fringes of det...
We model the subnebulae of Jupiter and Saturn wherein satellite accretion took place. We expect each...
ABSTRACT Using the density and temperature proÐles resulting from a two-dimensional turbulent model ...
We present an evolutionary turbulent model of the Saturn's subnebula consistent with recent core ac...
The low luminosity of Uranus is a long-standing challenge in planetary science. Simple adiabatic mod...
The formation mechanisms of the ice giants Uranus and Neptune, and the origin of their elemental and...