Europa and Ganymede, whose liquid water oceans are of uncertain thickness, are subject to tidal forces across a broad frequency spectrum. Tidal deformation is inherently frequency dependent, an effect which is enhanced when a subsurface ocean is present. We model the tidal response of Europa and Ganymede, taking into account ocean dynamics and the viscoelastic coupling to the ice shell. Tidal deformation at high frequencies - a result of moon-moon interactions - is resonantly amplified by ocean dynamics. We find the corresponding tidal Love numbers to be extremely sensitive to ocean thickness and weakly sensitive to ice shell thickness, shear modulus, and viscosity. Measuring these high-frequency deformations would provide a unique determin...
The gravitational force exerted by a central planet deforms its orbiting moons (tides) and periodica...
Subsurface ocean tides act as a mechanism to dissipate tidal energy in icy satellite interiors. We n...
International audienceContext. Oceanic tides are a major source of tidal dissipation. They drive the...
Tidal deformation of icy satellites provides crucial information on their subsurface structures. In ...
The interior of Europa, one of the moons in the Jovian system, is still mainly unknown. There are, h...
Tides, a consequence of differential gravitational forces, are one of the fundamental processes that...
A review of analytical techniques and documentation of previously inaccessible mathematical formulat...
Tidal heating can play an important role in the formation and evolution of subsurface oceans of oute...
Enceladus is one of the icy moons in the outer solar system. The Cassini mis- sion has found out dir...
International audienceWe explore the application of the Andrade model to the modeling of Europa's ti...
Some of the moons of the outer solar system harbour subsurface liquid oceans. Tidal dissipation play...
Observations of glacial isostatic adjustment (GIA), the viscoelastic relaxation of the Earth induced...
International audienceContext. The Galilean satellites Europa, Ganymede, and Callisto are thought to...
The icy satellites of the giant planets Jupiter and Saturn are among the most interesting celestial ...
The gravitational force exerted by a central planet deforms its orbiting moons (tides) and periodica...
Subsurface ocean tides act as a mechanism to dissipate tidal energy in icy satellite interiors. We n...
International audienceContext. Oceanic tides are a major source of tidal dissipation. They drive the...
Tidal deformation of icy satellites provides crucial information on their subsurface structures. In ...
The interior of Europa, one of the moons in the Jovian system, is still mainly unknown. There are, h...
Tides, a consequence of differential gravitational forces, are one of the fundamental processes that...
A review of analytical techniques and documentation of previously inaccessible mathematical formulat...
Tidal heating can play an important role in the formation and evolution of subsurface oceans of oute...
Enceladus is one of the icy moons in the outer solar system. The Cassini mis- sion has found out dir...
International audienceWe explore the application of the Andrade model to the modeling of Europa's ti...
Some of the moons of the outer solar system harbour subsurface liquid oceans. Tidal dissipation play...
Observations of glacial isostatic adjustment (GIA), the viscoelastic relaxation of the Earth induced...
International audienceContext. The Galilean satellites Europa, Ganymede, and Callisto are thought to...
The icy satellites of the giant planets Jupiter and Saturn are among the most interesting celestial ...
The gravitational force exerted by a central planet deforms its orbiting moons (tides) and periodica...
Subsurface ocean tides act as a mechanism to dissipate tidal energy in icy satellite interiors. We n...
International audienceContext. Oceanic tides are a major source of tidal dissipation. They drive the...