Recent structure models of Jupiter that match Juno gravity data suggest that the planet harbours an extended region in its deep interior that is enriched with heavy elements: a so-called dilute or fuzzy core. This finding raises the question of what possible formation pathways could have lead to such a structure. We modelled Jupiter’s formation and long-term evolution, starting at late-stage formation before runaway gas accretion. The formation scenarios we considered include both primordial composition gradients, as well as gradients that are built as proto-Jupiter rapidly acquires its gaseous envelope. We then followed Jupiter’s evolution as it cools down and contracts, with a particular focus on the energy and material transport in the i...
Supplemental materials of Howard et al. (2023, A&A). Abstract Context. The Juno mission has provid...
Context. The Juno mission has provided measurements of Jupiter’s gravity field with an outstanding l...
International audienceContext. While Jupiter's massive gas envelope consists mainly of hydrogen and ...
Recent structure models of Jupiter that match Juno gravity data suggest that the planet harbours an ...
International audienceThe Juno mission has revolutionized and challenged our understanding of Jupite...
The Juno mission has revolutionized and challenged our understanding of Jupiter. As Juno transitions...
Context. The Juno spacecraft has significantly improved the accuracy of low-order even gravitational...
The composition of Jupiter and the primordial distribution of the heavy elements are determined by i...
Giant planets are thought to have cores in their deep interiors, and the division into a heavy-eleme...
Recent formation and structure models of Jupiter suggest that the planet can have composition gradie...
Recent formation and structure models of Jupiter suggest that the planet can have composition gradie...
The Juno spacecraft has measured Jupiter's low-order, even gravitational moments, J(2)-J(8), to an u...
Context. The Juno probe that currently orbits Jupiter measures its gravitational moments with great ...
International audienceJupiter's core is generally assumed to have formed beyond the snow line. Here ...
Jupiter's core is generally assumed to have formed beyond the snow line. Here we consider an alterna...
Supplemental materials of Howard et al. (2023, A&A). Abstract Context. The Juno mission has provid...
Context. The Juno mission has provided measurements of Jupiter’s gravity field with an outstanding l...
International audienceContext. While Jupiter's massive gas envelope consists mainly of hydrogen and ...
Recent structure models of Jupiter that match Juno gravity data suggest that the planet harbours an ...
International audienceThe Juno mission has revolutionized and challenged our understanding of Jupite...
The Juno mission has revolutionized and challenged our understanding of Jupiter. As Juno transitions...
Context. The Juno spacecraft has significantly improved the accuracy of low-order even gravitational...
The composition of Jupiter and the primordial distribution of the heavy elements are determined by i...
Giant planets are thought to have cores in their deep interiors, and the division into a heavy-eleme...
Recent formation and structure models of Jupiter suggest that the planet can have composition gradie...
Recent formation and structure models of Jupiter suggest that the planet can have composition gradie...
The Juno spacecraft has measured Jupiter's low-order, even gravitational moments, J(2)-J(8), to an u...
Context. The Juno probe that currently orbits Jupiter measures its gravitational moments with great ...
International audienceJupiter's core is generally assumed to have formed beyond the snow line. Here ...
Jupiter's core is generally assumed to have formed beyond the snow line. Here we consider an alterna...
Supplemental materials of Howard et al. (2023, A&A). Abstract Context. The Juno mission has provid...
Context. The Juno mission has provided measurements of Jupiter’s gravity field with an outstanding l...
International audienceContext. While Jupiter's massive gas envelope consists mainly of hydrogen and ...