We present comparisons of precipitating electron flux and auroral brightness measurements made during several Juno transits over Jupiter's auroral regions in both hemispheres. We extract from the ultraviolet spectrograph (UVS) spectral imager H2 emission intensities at locations magnetically conjugate to the spacecraft using the JRM09 model. We use UVS images as close in time as possible to the electron measurements by the Jupiter Energetic Particle Detector Instrument (JEDI) instrument. The upward electron flux generally exceeds the downward component and shows a broadband energy distribution. Auroral intensity is related to total precipitated electron flux and compared with the energy-integrated JEDI flux inside the loss cone. The far ult...
We present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Distributions Experiment...
International audienceWe present multi-instrument Juno observations on day-of-year 86, 2017 that lin...
International audienceWe present multi-instrument Juno observations on day-of-year 86, 2017 that lin...
peer reviewedJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar system, ...
Jupiter's powerful aurorae are caused by energetic electrons precipitating from the magnetosphere in...
peer reviewedAbstract The relationship between electron energy flux and the characteristic energy of...
The relationship between electron energy flux and the characteristic energy of electron distribution...
The relationship between electron energy flux and the characteristic energy of electron distribution...
The relationship between electron energy flux and the characteristic energy of electron distribution...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
Abstract The relationship between electron energy flux and the characteristic energy of electron dis...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
The relationship between electron energy flux and the characteristic energy of electron distribution...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
We present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Distributions Experiment...
International audienceWe present multi-instrument Juno observations on day-of-year 86, 2017 that lin...
International audienceWe present multi-instrument Juno observations on day-of-year 86, 2017 that lin...
peer reviewedJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar system, ...
Jupiter's powerful aurorae are caused by energetic electrons precipitating from the magnetosphere in...
peer reviewedAbstract The relationship between electron energy flux and the characteristic energy of...
The relationship between electron energy flux and the characteristic energy of electron distribution...
The relationship between electron energy flux and the characteristic energy of electron distribution...
The relationship between electron energy flux and the characteristic energy of electron distribution...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
Abstract The relationship between electron energy flux and the characteristic energy of electron dis...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
The relationship between electron energy flux and the characteristic energy of electron distribution...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
We present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Distributions Experiment...
International audienceWe present multi-instrument Juno observations on day-of-year 86, 2017 that lin...
International audienceWe present multi-instrument Juno observations on day-of-year 86, 2017 that lin...