International audienceIo is the volcanically most active body in the Solar System and has a large surface heat flux. The geological activity is thought to be the result of tides raised by Jupiter, but it is not known whether the current tidal heat production is sufficiently high to generate the observed surface heat flow. Io's tidal heat comes from the orbital energy of the Io-Jupiter system (resulting in orbital acceleration), whereas dissipation of energy in Jupiter causes Io's orbital motion to decelerate. Here we report a determination of the tidal dissipation in Io and Jupiter through its effect on the orbital motions of the Galilean moons. Our results show that the rate of internal energy dissipation in Io (k2/Q = 0.015+/-0.003, where...
Tidal dissipation makes Jupiter's moon Io the most volcanically active body in the solar system. Mos...
Io's surface is younger and has more active volcanism than any other terrestrial body in the solar s...
International audienceThe systems of natural planetary satellites are often compared to a compact so...
The discovery of active volcanism on Jupiter’s moon Io in 1979 has motivated significant research by...
International audienceAlthough the quest for tidal accelerations among the Galilean satellites has b...
[1] The prodigious heat flux emitted from the surface of Jupiter’s moon Io is produced in the interi...
Io's spectacular and unique appearance is characterised by its yellowish surface, colourful lava dep...
Jupiter’s moon Io owes its intense volcanic activity to tidal forces acting to distort its crust. Th...
Aims. We plan to reproduce a previously published calculation for the tidal dissipation in Io and ex...
Jupiter’s moon Io is the most volcanically active body in the solar system. This paper seeks to qu...
Thousands of exoplanets have been discovered; however, the detection of exomoons remains elusive. Ti...
The observed activity at the surfaces of the Galilean satellites mask subsurface internal dynamics. ...
The Juno spacecraft has acquired exceptionally precise data on Jupiter's gravity field, offering inv...
Io is known as the volcanically most active body in the Solar System. This volcanic activity is the ...
Context.Eccentricity or obliquity tides have been proposed as the missing energy source that may exp...
Tidal dissipation makes Jupiter's moon Io the most volcanically active body in the solar system. Mos...
Io's surface is younger and has more active volcanism than any other terrestrial body in the solar s...
International audienceThe systems of natural planetary satellites are often compared to a compact so...
The discovery of active volcanism on Jupiter’s moon Io in 1979 has motivated significant research by...
International audienceAlthough the quest for tidal accelerations among the Galilean satellites has b...
[1] The prodigious heat flux emitted from the surface of Jupiter’s moon Io is produced in the interi...
Io's spectacular and unique appearance is characterised by its yellowish surface, colourful lava dep...
Jupiter’s moon Io owes its intense volcanic activity to tidal forces acting to distort its crust. Th...
Aims. We plan to reproduce a previously published calculation for the tidal dissipation in Io and ex...
Jupiter’s moon Io is the most volcanically active body in the solar system. This paper seeks to qu...
Thousands of exoplanets have been discovered; however, the detection of exomoons remains elusive. Ti...
The observed activity at the surfaces of the Galilean satellites mask subsurface internal dynamics. ...
The Juno spacecraft has acquired exceptionally precise data on Jupiter's gravity field, offering inv...
Io is known as the volcanically most active body in the Solar System. This volcanic activity is the ...
Context.Eccentricity or obliquity tides have been proposed as the missing energy source that may exp...
Tidal dissipation makes Jupiter's moon Io the most volcanically active body in the solar system. Mos...
Io's surface is younger and has more active volcanism than any other terrestrial body in the solar s...
International audienceThe systems of natural planetary satellites are often compared to a compact so...