The radiation belts and magnetospheres of Jupiter and Saturn show significant intensities of relativistic electrons with energies up to tens of megaelectronvolts (MeV). To date, the question on how the electrons reach such high energies is not fully answered. This is largely due to the lack of high‐quality electron spectra in the MeV energy range that models could be fit to. We reprocess data throughout the Galileo orbiter mission in order to derive Jupiter's electron spectra up to tens of MeV. In the case of Saturn, the spectra from the Cassini orbiter are readily available and we provide a systematic analysis aiming to study their acceleration mechanisms. Our analysis focuses on the magnetospheres of these planets, at distances of L > 20 ...
The energetic electron spectra of Saturn's radiation belts are studied using Cassini's 13 years of m...
We present energetic electron data obtained by Cassini's Magnetospheric Imaging Instrument in the in...
Auroral particle precipitation dominates the chemical and physical environment of the upper atmosphe...
The radiation belts and magnetospheres of Jupiter and Saturn show significant intensities of relativ...
The short, 7.2-day orbital period of Cassini’s Ring Grazing Orbits (RGO) provided an opportunity to ...
We revisit comparisons between the electron radiation belts of all of the strongly magnetized planet...
[1] To address factors dictating similarities and differences between solar system radiation belts, ...
The morphology of electron pitch angle distributions (PADs) helps to identify dynamic processes in S...
According to existing theory, electrons are accelerated up to ultra-relativistic energies(1) inside ...
Jupiter has the most intense radiation belts of all the outer planets. It is not yet known how elect...
At Saturn electrons are trapped in the planet’s magnetic field and accelerated to relativistic energ...
Many spacecraft fly within or through a natural and variable particle accelerator powered by the cou...
The L shell distributions of MeV electrons in Saturn's radiation belt are investigated orbit by orbi...
Abstract Recent analysis of satellite data obtained during the 9 October 2012 geomagnetic storm iden...
Abstract: The electron intensities in the energy range from a few hundred keV to a few tens of MeV i...
The energetic electron spectra of Saturn's radiation belts are studied using Cassini's 13 years of m...
We present energetic electron data obtained by Cassini's Magnetospheric Imaging Instrument in the in...
Auroral particle precipitation dominates the chemical and physical environment of the upper atmosphe...
The radiation belts and magnetospheres of Jupiter and Saturn show significant intensities of relativ...
The short, 7.2-day orbital period of Cassini’s Ring Grazing Orbits (RGO) provided an opportunity to ...
We revisit comparisons between the electron radiation belts of all of the strongly magnetized planet...
[1] To address factors dictating similarities and differences between solar system radiation belts, ...
The morphology of electron pitch angle distributions (PADs) helps to identify dynamic processes in S...
According to existing theory, electrons are accelerated up to ultra-relativistic energies(1) inside ...
Jupiter has the most intense radiation belts of all the outer planets. It is not yet known how elect...
At Saturn electrons are trapped in the planet’s magnetic field and accelerated to relativistic energ...
Many spacecraft fly within or through a natural and variable particle accelerator powered by the cou...
The L shell distributions of MeV electrons in Saturn's radiation belt are investigated orbit by orbi...
Abstract Recent analysis of satellite data obtained during the 9 October 2012 geomagnetic storm iden...
Abstract: The electron intensities in the energy range from a few hundred keV to a few tens of MeV i...
The energetic electron spectra of Saturn's radiation belts are studied using Cassini's 13 years of m...
We present energetic electron data obtained by Cassini's Magnetospheric Imaging Instrument in the in...
Auroral particle precipitation dominates the chemical and physical environment of the upper atmosphe...