peer reviewedThe Jovian Auroral Distributions Experiment aboard Juno observed accelerated proton populations connected to Io's footprint tail aurora. While accelerated electron populations have been previously linked with Io's auroral footprint tail aurora, we present new evidence for proton acceleration due to Io's Alfvénic interaction with Jupiter's magnetosphere. Separate populations were accelerated above the Io torus and at high latitudes near Jupiter. The timing suggests the acceleration is due to Alfvén waves associated with Io's Main Alfvén Wing. The inferred high-latitude proton acceleration region spans 0.92.5 Jovian radii in altitude, comparable to the expected location for electron acceleration, and suggests the associated Alfvé...
A detailed account of the Pioneer 10 encounter with Jupiter is presented. Flux time histories of ele...
Planetary magnetospheres across our solar system are known to be very efficient accelerators of char...
Planetary magnetospheres across our solar system are known to be very efficient accelerators of char...
The Juno spacecraft crossed flux tubes connected to the Io footprint tail at a range of latitudes an...
Io's interaction with the Jovian magnetosphere generates a power of about 1012 W which propagates as...
Io's motion relative to the Jovian magnetic field generates a power of about 10^12 W, which is thoug...
peer reviewedWe analyze precipitating electron fluxes connected to 18 crossings of Io's footprint ta...
Satellite-induced auroral emissions are known since decades, in particular those associated with the...
The Juno spacecraft crossed flux tubes connected to the Io footprint tail at low Jovian altitudes on...
Infrared and ultraviolet images have established that auroral emissions at Jupiter caused by the ele...
peer reviewedAbstract Io, the most volcanically active body in the solar system, fuels a plasma toru...
peer reviewedIntegrating simultaneous in-situ measurements of magnetic field fluctuations, precipita...
Using a combination of Juno magnetometer and plasma data, we show evidence of Alfvénic turbulence wi...
The electromagnetic perturbations caused by the interaction between the moons Io, Europa, and Ganyme...
peer reviewedTwo new Juno-observed particle features of Jupiter's main aurora demonstrate substantia...
A detailed account of the Pioneer 10 encounter with Jupiter is presented. Flux time histories of ele...
Planetary magnetospheres across our solar system are known to be very efficient accelerators of char...
Planetary magnetospheres across our solar system are known to be very efficient accelerators of char...
The Juno spacecraft crossed flux tubes connected to the Io footprint tail at a range of latitudes an...
Io's interaction with the Jovian magnetosphere generates a power of about 1012 W which propagates as...
Io's motion relative to the Jovian magnetic field generates a power of about 10^12 W, which is thoug...
peer reviewedWe analyze precipitating electron fluxes connected to 18 crossings of Io's footprint ta...
Satellite-induced auroral emissions are known since decades, in particular those associated with the...
The Juno spacecraft crossed flux tubes connected to the Io footprint tail at low Jovian altitudes on...
Infrared and ultraviolet images have established that auroral emissions at Jupiter caused by the ele...
peer reviewedAbstract Io, the most volcanically active body in the solar system, fuels a plasma toru...
peer reviewedIntegrating simultaneous in-situ measurements of magnetic field fluctuations, precipita...
Using a combination of Juno magnetometer and plasma data, we show evidence of Alfvénic turbulence wi...
The electromagnetic perturbations caused by the interaction between the moons Io, Europa, and Ganyme...
peer reviewedTwo new Juno-observed particle features of Jupiter's main aurora demonstrate substantia...
A detailed account of the Pioneer 10 encounter with Jupiter is presented. Flux time histories of ele...
Planetary magnetospheres across our solar system are known to be very efficient accelerators of char...
Planetary magnetospheres across our solar system are known to be very efficient accelerators of char...