Context. The Juno spacecraft has significantly improved the accuracy of gravitational harmonic coefficients J4, J6 and J8 during its first two perijoves. However, there are still differences in the interior model predictions of core mass and envelope metallicity because of the uncertainties in the hydrogen-helium equations of state. New theoretical approaches or observational data are hence required in order to further constrain the interior models of Jupiter. A well constrained interior model of Jupiter is helpful for understanding not only the dynamic flows in the interior, but also the formation history of giant planets. Aims. We present the radial density profiles of Jupiter fitted to the Juno gravity field observations. Also, we aim to...
International audienceObservations of Jupiter’s gravity field by Juno have revealed surprisingly low...
International audienceContext. While Jupiter's massive gas envelope consists mainly of hydrogen and ...
This paper examines the interior structure and composition of Earth, Jupiter, and Neptune by using m...
Context. The Juno spacecraft has significantly improved the accuracy of gravitational harmonic coeff...
Constraining Jupiter's internal structure is crucial for understanding its formation and evolution h...
Context. The Juno mission has provided measurements of Jupiter’s gravity field with an outstanding l...
The Juno spacecraft has measured Jupiter's low-order, even gravitational moments, J2–J8, to an unpre...
Supplemental materials of Howard et al. (2023, A&A). Abstract Context. The Juno mission has provid...
Context. Heavy elements, even though they are a smaller constituent, are crucial to unders...
The moment of inertia of a giant planet reveals important information about the planet’s inter-nal d...
The moment of inertia of a giant planet reveals important information about the planet’s internal de...
Context. The Juno spacecraft has significantly improved the accuracy of low-order even gravitational...
Context. The Juno spacecraft has obtained highly accurate tidal Love numbers, which provide importan...
International audienceObservations of Jupiter’s gravity field by Juno have revealed surprisingly low...
International audienceContext. While Jupiter's massive gas envelope consists mainly of hydrogen and ...
This paper examines the interior structure and composition of Earth, Jupiter, and Neptune by using m...
Context. The Juno spacecraft has significantly improved the accuracy of gravitational harmonic coeff...
Constraining Jupiter's internal structure is crucial for understanding its formation and evolution h...
Context. The Juno mission has provided measurements of Jupiter’s gravity field with an outstanding l...
The Juno spacecraft has measured Jupiter's low-order, even gravitational moments, J2–J8, to an unpre...
Supplemental materials of Howard et al. (2023, A&A). Abstract Context. The Juno mission has provid...
Context. Heavy elements, even though they are a smaller constituent, are crucial to unders...
The moment of inertia of a giant planet reveals important information about the planet’s inter-nal d...
The moment of inertia of a giant planet reveals important information about the planet’s internal de...
Context. The Juno spacecraft has significantly improved the accuracy of low-order even gravitational...
Context. The Juno spacecraft has obtained highly accurate tidal Love numbers, which provide importan...
International audienceObservations of Jupiter’s gravity field by Juno have revealed surprisingly low...
International audienceContext. While Jupiter's massive gas envelope consists mainly of hydrogen and ...
This paper examines the interior structure and composition of Earth, Jupiter, and Neptune by using m...