Gas giant planets are turbulent rotating magnetic objects that have strong and complex interactions with their environment. In such systems, the dissipation of tidal waves excited by tidal forces shape the orbital architecture and the rotational dynamics of the planets. During the last decade, a revolution has occurred for our understanding of tides in these systems and for our knowledge of the interiors of giant planets thanks to the space mission JUNO and the grand finale of the CASSINI mission. Our objective is thus to predict tidal dissipation using internal structure models, which agree with these latest observational constrains. To accomplish that, we build a new ab-initio model of tidal dissipation in giant planets that coherently t...
International audienceThe prescriptions used today in celestial mechanics to describe dynamical proc...
International audienceTidal dissipation in stars is one of the key physical mechanisms that drive th...
International audienceContext. Recent Juno observations have suggested that the heavy elements in Ju...
Gas giant planets are turbulent rotating magnetic objects that have strong and complex interactions ...
International audienceGaseous giant planets (Jupiter and Saturn in our solar system and hot Jupiters...
Context. Tidal dissipation in planetary interiors is one of the key physical mechanisms that drive t...
International audiencePlanetary systems evolve over secular time scales. One of the key mechanisms t...
The Juno spacecraft has acquired exceptionally precise data on Jupiter's gravity field, offering inv...
I will present state-of-the art calculations studying tidal dissipation in MKGF stars throughout the...
Cette thèse étudie les mécanismes de dissipation de marée dans les étoiles de faible masse, possédan...
Many known extra-solar giant planets lie close to their host stars. Around 60 have their semi-major ...
Received... / accepted... Context. Tidal dissipation in planetary interiors is one of the key physic...
Tidal dissipation in stars and planets is one of the key physical mechanisms that drive the evolutio...
International audienceThe prescriptions used today in celestial mechanics to describe dynamical proc...
International audienceTidal dissipation in stars is one of the key physical mechanisms that drive th...
International audienceContext. Recent Juno observations have suggested that the heavy elements in Ju...
Gas giant planets are turbulent rotating magnetic objects that have strong and complex interactions ...
International audienceGaseous giant planets (Jupiter and Saturn in our solar system and hot Jupiters...
Context. Tidal dissipation in planetary interiors is one of the key physical mechanisms that drive t...
International audiencePlanetary systems evolve over secular time scales. One of the key mechanisms t...
The Juno spacecraft has acquired exceptionally precise data on Jupiter's gravity field, offering inv...
I will present state-of-the art calculations studying tidal dissipation in MKGF stars throughout the...
Cette thèse étudie les mécanismes de dissipation de marée dans les étoiles de faible masse, possédan...
Many known extra-solar giant planets lie close to their host stars. Around 60 have their semi-major ...
Received... / accepted... Context. Tidal dissipation in planetary interiors is one of the key physic...
Tidal dissipation in stars and planets is one of the key physical mechanisms that drive the evolutio...
International audienceThe prescriptions used today in celestial mechanics to describe dynamical proc...
International audienceTidal dissipation in stars is one of the key physical mechanisms that drive th...
International audienceContext. Recent Juno observations have suggested that the heavy elements in Ju...