International audienceThe interaction of Io with the Jovian magnetosphere is the best known - and the most intense - case of satellite-magnetosphere interaction. The interaction involves a power of more than a TeraWatt, a few percent of which are transferred to electrons. These electrons precipitate in the Jovian ionosphere where they light-up bright auroral emissions (several 100's kR to a few 1000's kR). The brightness of the Io-controlled UV auroras is known to vary, due to the Jovian magnetic field tilt, which induces longitudinal variations, and due to the Io torus ever changing parameters (possibly due to Io's volcanic activity), which induce a temporal variation. As Io-controlled UV auroras have been monitored for a long time, the va...
Io's interaction with the Jovian magnetosphere generates a power of about 1012 W which propagates as...
The electromagnetic perturbations caused by the interaction between the moons Io, Europa, and Ganyme...
Jupiter hosts very intense auroral emissions, which originates from various magnetospheric processes...
International audienceThe interaction of Io with the Jovian magnetosphere is the best known - and th...
International audienceThe interaction of Io with the Jovian magnetosphere is the best known - and th...
The interaction of Io with the Jovian magnetosphere is the best known – and the most intense – case ...
International audienceThe interaction of Io with the Jovian magnetosphere creates the best known and...
International audienceThe interaction of Io with the Jovian magnetosphere creates the best known and...
International audienceThe interaction of Io with the Jovian magnetosphere creates the best known and...
The interaction of Io with the Jovian magnetosphere creates the best known and brightest satellite-c...
The electro-magnetic interaction between Io and the Jovian magnetosphere generates a perturbation in...
Io is the primary source of plasma in the Jovian magnetosphere, continuously releasing approximately...
[1] The auroral emission close to the foot of Io's magnetic flux tube has been known for over a deca...
[1] The auroral emission close to the foot of Io's magnetic flux tube has been known for over a deca...
The signature of electromagnetic interaction between the moons Io, Europa and Ganymede and the Jovia...
Io's interaction with the Jovian magnetosphere generates a power of about 1012 W which propagates as...
The electromagnetic perturbations caused by the interaction between the moons Io, Europa, and Ganyme...
Jupiter hosts very intense auroral emissions, which originates from various magnetospheric processes...
International audienceThe interaction of Io with the Jovian magnetosphere is the best known - and th...
International audienceThe interaction of Io with the Jovian magnetosphere is the best known - and th...
The interaction of Io with the Jovian magnetosphere is the best known – and the most intense – case ...
International audienceThe interaction of Io with the Jovian magnetosphere creates the best known and...
International audienceThe interaction of Io with the Jovian magnetosphere creates the best known and...
International audienceThe interaction of Io with the Jovian magnetosphere creates the best known and...
The interaction of Io with the Jovian magnetosphere creates the best known and brightest satellite-c...
The electro-magnetic interaction between Io and the Jovian magnetosphere generates a perturbation in...
Io is the primary source of plasma in the Jovian magnetosphere, continuously releasing approximately...
[1] The auroral emission close to the foot of Io's magnetic flux tube has been known for over a deca...
[1] The auroral emission close to the foot of Io's magnetic flux tube has been known for over a deca...
The signature of electromagnetic interaction between the moons Io, Europa and Ganymede and the Jovia...
Io's interaction with the Jovian magnetosphere generates a power of about 1012 W which propagates as...
The electromagnetic perturbations caused by the interaction between the moons Io, Europa, and Ganyme...
Jupiter hosts very intense auroral emissions, which originates from various magnetospheric processes...