We model the subnebulae of Jupiter and Saturn wherein satellite accretion took place. We expect a giant planet subnebula to be composed of an optically thick (given gaseous opacity) inner region inside of the planet's centrifugal radius (located at r(sub c, sup J) = l5R(sub J) for Jupiter and r(sub c, sup S) = 22R(sub S) for Saturn), and an optically thin, extended outer disk out to a fraction of the planet's Roche lobe, which we choose to be R(sub roche)/5 (located at approximately 150R(sub J) near the inner irregular satellites for Jupiter, and approximately 200R(sub S) near Phoebe for Saturn). This places Titan and Ganymede in the inner disk, Callisto and Iapetus in the outer disk, and Hyperion in the transition region. The inner disk is...
The four major satellites of Jupiter, known as the Galilean moons, and Saturn's most massive satelli...
We use an evolutionary turbulent model of Jupiter's subnebula to constrain the composition of ices i...
This project investigates the origin of giant planets, both in the Solar System and around other sta...
We model the subnebulae of Jupiter and Saturn wherein satellite accretion took place. We expect each...
A model for Galilean satellite formation was analyzed in which the satellites accrete in the presenc...
We examine formation conditions for the Galilean satellites in the context of models of late-stage g...
Abstract. We have developed an evolutionary turbulent model of the Jovian subnebula consistent with ...
The observed properties of giant planets, models of their evolution and observations of pro-toplanet...
Recent analyses have shown that the concluding stages of giant planet formation are accompanied by t...
Neptune is the outermost of the four giant planets in our solar system. The region in which Neptune ...
The four major satellites of Jupiter, known as the Galilean moons, and Saturn’s most massive satelli...
We use an evolutionary turbulent model of Jupiter’s subnebula to constrain the composition of ices i...
International audienceWe describe an evolutionary turbulent one-dimensional model of the Jovian subn...
Context. In the Grand Tack (GT) scenario for the young solar system, Jupiter formed beyond 3.5 AU fr...
According to both spectroscopic measurements and interior models, Jupiter, Saturn, Uranus and Neptun...
The four major satellites of Jupiter, known as the Galilean moons, and Saturn's most massive satelli...
We use an evolutionary turbulent model of Jupiter's subnebula to constrain the composition of ices i...
This project investigates the origin of giant planets, both in the Solar System and around other sta...
We model the subnebulae of Jupiter and Saturn wherein satellite accretion took place. We expect each...
A model for Galilean satellite formation was analyzed in which the satellites accrete in the presenc...
We examine formation conditions for the Galilean satellites in the context of models of late-stage g...
Abstract. We have developed an evolutionary turbulent model of the Jovian subnebula consistent with ...
The observed properties of giant planets, models of their evolution and observations of pro-toplanet...
Recent analyses have shown that the concluding stages of giant planet formation are accompanied by t...
Neptune is the outermost of the four giant planets in our solar system. The region in which Neptune ...
The four major satellites of Jupiter, known as the Galilean moons, and Saturn’s most massive satelli...
We use an evolutionary turbulent model of Jupiter’s subnebula to constrain the composition of ices i...
International audienceWe describe an evolutionary turbulent one-dimensional model of the Jovian subn...
Context. In the Grand Tack (GT) scenario for the young solar system, Jupiter formed beyond 3.5 AU fr...
According to both spectroscopic measurements and interior models, Jupiter, Saturn, Uranus and Neptun...
The four major satellites of Jupiter, known as the Galilean moons, and Saturn's most massive satelli...
We use an evolutionary turbulent model of Jupiter's subnebula to constrain the composition of ices i...
This project investigates the origin of giant planets, both in the Solar System and around other sta...