The magnetometer measurements taken by Cassini have confirmed the unusual character of Saturn’s internal magnetic field known from previous flybys and have revealed additional properties that suggest a rather unique dynamo in this planet. Within measurement uncertainty, the internal magnetic field is completely symmetric with respect to Saturn’s spin axis. The upper limit on the tilt of the magnetic dipole could be reduced from 1 to 0.06 degree. Moreover, only axisymmetric quadrupole and octupole moments are needed to fit the data. The lack of non-axisymmetric field components prevents a reliable determination of the bulk rotation rate of Saturn’s deep interior. Using data from Cassini’s closest approach to Saturn during orbit insertion, th...
Saturn's magnetic field is remarkably axisymmetric. Its dipole axis is inclined by less than 0.2 deg...
Observations performed by the radio and plasma wave science (RPWS) experiment on board the Cassini s...
If a conducting fluid shell is undergoing spin-axisymmetric differential rotation and overlies the d...
The Cassini mission entered the Grand Finale phase in April 2017 and executed 22.5 highly inclined, ...
During 2017, the Cassini fluxgate magnetometer made in situ measurements of Saturn's magnetic field ...
Since 1973 space missions carrying vector magnetometers have shown that most, but not all, solar sys...
International audienceA dipole model ("birotor dipole") was proposed for Saturn's inner magnetic fie...
International audienceTwo distinct and variable rotation periods in Saturn’s radio emissions were re...
The Pioneer Saturn vector helium magnetometer has detected a bow shock and magnetopause at Saturn an...
We investigate the determination of the rotation period of Saturn's interior using magnetic field me...
International audienceSince the insertion of Cassini in the Saturnian system in July 2004, the radio...
International audienceThe radio and plasma wave science (RPWS) experiment on board the Cassini space...
International audienceThe radio and plasma wave science (RPWS) experiment on board the Cassini space...
Saturn's magnetic field is remarkably axisymmetric. Its dipole axis is inclined by less than 0.2 deg...
Observations performed by the radio and plasma wave science (RPWS) experiment on board the Cassini s...
If a conducting fluid shell is undergoing spin-axisymmetric differential rotation and overlies the d...
The Cassini mission entered the Grand Finale phase in April 2017 and executed 22.5 highly inclined, ...
During 2017, the Cassini fluxgate magnetometer made in situ measurements of Saturn's magnetic field ...
Since 1973 space missions carrying vector magnetometers have shown that most, but not all, solar sys...
International audienceA dipole model ("birotor dipole") was proposed for Saturn's inner magnetic fie...
International audienceTwo distinct and variable rotation periods in Saturn’s radio emissions were re...
The Pioneer Saturn vector helium magnetometer has detected a bow shock and magnetopause at Saturn an...
We investigate the determination of the rotation period of Saturn's interior using magnetic field me...
International audienceSince the insertion of Cassini in the Saturnian system in July 2004, the radio...
International audienceThe radio and plasma wave science (RPWS) experiment on board the Cassini space...
International audienceThe radio and plasma wave science (RPWS) experiment on board the Cassini space...
Saturn's magnetic field is remarkably axisymmetric. Its dipole axis is inclined by less than 0.2 deg...
Observations performed by the radio and plasma wave science (RPWS) experiment on board the Cassini s...
If a conducting fluid shell is undergoing spin-axisymmetric differential rotation and overlies the d...