International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar system, are caused by energetic electrons precipitating from the magnetosphere into the atmosphere where they excite the molecular hydrogen. Previous studies focused on case analyses and/or greater than 30-keV energy electrons. Here for the first time we provide a comprehensive evaluation of Jovian auroral electron characteristics over the entire relevant range of energies (~100 eV to ~1 MeV). The focus is on the first eight perijoves providing a coarse but complete System III view of the northern and southern auroral regions with corresponding UV observations. The latest magnetic field model JRM09 with a current sheet model is used to map J...
Abstract The relationship between electron energy flux and the characteristic energy of electron dis...
We analyzed two observations obtained in Jan. 2013, consisting of spatial scans of the jovian north ...
International audienceWe present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Di...
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...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
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...
We present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Distributions Experiment...
We present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Distributions Experiment...
We present comparisons of precipitating electron flux and auroral brightness measurements made durin...
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...
The FUV Jovian aurora is excited by collisions of energetic electrons accelerated along the magnetic...
Abstract The relationship between electron energy flux and the characteristic energy of electron dis...
We analyzed two observations obtained in Jan. 2013, consisting of spatial scans of the jovian north ...
International audienceWe present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Di...
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...
International audienceJupiter's ultraviolet (UV) aurorae, the most powerful and intense in the solar...
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...
We present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Distributions Experiment...
We present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Distributions Experiment...
We present comparisons of precipitating electron flux and auroral brightness measurements made durin...
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...
The FUV Jovian aurora is excited by collisions of energetic electrons accelerated along the magnetic...
Abstract The relationship between electron energy flux and the characteristic energy of electron dis...
We analyzed two observations obtained in Jan. 2013, consisting of spatial scans of the jovian north ...
International audienceWe present observations of 0.1-100 keV electrons from Juno's Jovian Auroral Di...