Using a combination of Juno magnetometer and plasma data, we show evidence of Alfvénic turbulence within the mid‐to‐high latitude magnetosphere with sufficient conditions to trigger auroral particle acceleration. We analyze 12 events that, in agreement with theoretical results, are found to be dissipative at the electron inertial scale. Furthermore, these events contain significant Poynting flux in the range ∼0.8–20 mW/m2 at ionospheric altitudes. This is sufficient to generate auroral emissions. We confirm that such events are incompressible, confirming their Alfvénicity, occur at dissipative scales, have intermittent features present and are multifractal in nature. These results illustrate the importance of turbulence in the mid‐to‐high l...
Auroral emissions have been extensively observed at the Earth, Jupiter, and Saturn. These planets al...
We present observations of Jupiter's magnetic field and plasma obtained with the NASA Juno spacecraf...
peer reviewedThe Juno spacecraft's polar orbits have enabled direct sampling of Jupiter's low-altitu...
Abstract: Using a combination of Juno magnetometer and plasma data, we show evidence of Alfvénic tur...
In this thesis, we investigate the relevance of Alfvénic turbulence and related wave-particle intera...
Plasmas naturally occur in our solar system in the form of the Sun, the solar wind, and material wit...
peer reviewedIntegrating simultaneous in-situ measurements of magnetic field fluctuations, precipita...
The Alfvn wave mode transmits fieldaligned currents and largescale turbulence throughout Jupiter's m...
peer reviewedLarge-scale electrical currents and Alfvénic waves are the two main drivers responsible...
Large-scale electrical currents and Alfvénic waves are the two main drivers responsible for producin...
peer reviewedThe Jovian Auroral Distributions Experiment aboard Juno observed accelerated proton pop...
Io's interaction with the Jovian magnetosphere generates a power of about 1012 W which propagates as...
We present simultaneous observations of aurorae at Jupiter from the Hubble Space Telescope and Hisak...
The Juno spacecraft's polar orbits have enabled direct sampling of Jupiter's low-altitude auroral fi...
Large-scale electrical currents and Alfvenic waves are the two main drivers responsible for producin...
Auroral emissions have been extensively observed at the Earth, Jupiter, and Saturn. These planets al...
We present observations of Jupiter's magnetic field and plasma obtained with the NASA Juno spacecraf...
peer reviewedThe Juno spacecraft's polar orbits have enabled direct sampling of Jupiter's low-altitu...
Abstract: Using a combination of Juno magnetometer and plasma data, we show evidence of Alfvénic tur...
In this thesis, we investigate the relevance of Alfvénic turbulence and related wave-particle intera...
Plasmas naturally occur in our solar system in the form of the Sun, the solar wind, and material wit...
peer reviewedIntegrating simultaneous in-situ measurements of magnetic field fluctuations, precipita...
The Alfvn wave mode transmits fieldaligned currents and largescale turbulence throughout Jupiter's m...
peer reviewedLarge-scale electrical currents and Alfvénic waves are the two main drivers responsible...
Large-scale electrical currents and Alfvénic waves are the two main drivers responsible for producin...
peer reviewedThe Jovian Auroral Distributions Experiment aboard Juno observed accelerated proton pop...
Io's interaction with the Jovian magnetosphere generates a power of about 1012 W which propagates as...
We present simultaneous observations of aurorae at Jupiter from the Hubble Space Telescope and Hisak...
The Juno spacecraft's polar orbits have enabled direct sampling of Jupiter's low-altitude auroral fi...
Large-scale electrical currents and Alfvenic waves are the two main drivers responsible for producin...
Auroral emissions have been extensively observed at the Earth, Jupiter, and Saturn. These planets al...
We present observations of Jupiter's magnetic field and plasma obtained with the NASA Juno spacecraf...
peer reviewedThe Juno spacecraft's polar orbits have enabled direct sampling of Jupiter's low-altitu...