39 citations · 39 across the 3 of their papers we have counts for
4 papers
Understanding tidal dissipation in gaseous giant planets from their core to their surface
M. Guenel, S. Mathis, F. Remus
Tidal dissipation in planetary interiors is one of the key physical mechanisms that drive the evolution of star-planet and planet-moon systems. Tidal dissipation in planets is intr…
Understanding tidal dissipation in gaseous giant planets : the respective contributions of their core and envelope
M. Guenel, S. Mathis, F. Remus
Tidal dissipation in planetary interiors is one of the key physical mechanisms that drive the evolution of star-planet and planet-moon systems. New constraints are now obtained bot…
Unravelling tidal dissipation in gaseous giant planets
Mathieu Guenel, Stéphane Mathis, Françoise Remus
Tidal dissipation in planetary interiors is one of the key physical mechanisms that drive the evolution of star-planet and planet-moon systems. New constraints are now obtained bot…
Anelastic tidal dissipation in multi-layer planets
F. Remus, S. Mathis, J. -P. Zahn +1
Earth-like planets have viscoelastic mantles, whereas giant planets may have viscoelastic cores. The tidal dissipation of such solid regions, gravitationally perturbed by a compani…