The cosmic ray system on Voyager 2 found a trapped radiation environment in Neptune's inner magnetosphere which is controlled primarily by absorption at the rings and satellite surfaces. The intensity of electrons with kinetic energies ≳ 1 MeV shows particularly strong and narrow signatures associated with absorption by the satellite 1989N1 at an orbital radius of 4.75 Neptune radii. Closer to the planet are several signatures of the inner satellites and rings. Absorption limits the intensity of the inner radiation belt sufficiently for the maximum intensity to occur outside the orbit of 1989N1 at a magnetic L shell of ∼7. Radial profiles of the electron phase space density show that electrons diffuse inward from a source in the outer magne...
A large flux of > 100 MeV electrons were registered in the inner radiation belt on low-altitude s...
The energy spectra and angular distributions of electrons observed by Pioneer 11 as a function of ra...
The inner boundary of Saturn's electron radiation belts, near the planet's A‐ring (∼2.27 Rs), is stu...
The cosmic ray system on Voyager 2 found a trapped radiation environment in Neptune's inner magnetos...
The Voyager 2 cosmic ray system (CRS) measured significant fluxes of energetic [≳ 1 megaelectron vo...
During the encounter with Uranus, the cosmic ray system on Voyager 2 measured significant fluxes of...
This grant was for the analysis and interpretation of data obtained by the cosmic ray system (CRS) o...
Results from the cosmic-ray system on Voyager 2 in Saturn's magnetosphere are presented. During the ...
Ring systems around magnetized planets are expected to have varied interactions with the magnetic fi...
The Voyager 2 cosmic ray experiment observed intense electron fluxes in the middle magnetosphere of ...
The Cosmic Ray Subsystem aboard Voyager 2 measured large fluxes of trapped energetic protons and el...
Satellites orbiting within the magnetospheres of the giant planets are effective absorbers of trappe...
The Voyager 2 Cosmic Ray System found large-scale macrosignatures of satellite sweeping for MeV elec...
A large flux of > 100 MeV electrons were registered in the inner radiation belt on low-altitude sate...
The ring systems of Jupiter and Saturn, and their interaction with the magnetosphere were studied. O...
A large flux of > 100 MeV electrons were registered in the inner radiation belt on low-altitude s...
The energy spectra and angular distributions of electrons observed by Pioneer 11 as a function of ra...
The inner boundary of Saturn's electron radiation belts, near the planet's A‐ring (∼2.27 Rs), is stu...
The cosmic ray system on Voyager 2 found a trapped radiation environment in Neptune's inner magnetos...
The Voyager 2 cosmic ray system (CRS) measured significant fluxes of energetic [≳ 1 megaelectron vo...
During the encounter with Uranus, the cosmic ray system on Voyager 2 measured significant fluxes of...
This grant was for the analysis and interpretation of data obtained by the cosmic ray system (CRS) o...
Results from the cosmic-ray system on Voyager 2 in Saturn's magnetosphere are presented. During the ...
Ring systems around magnetized planets are expected to have varied interactions with the magnetic fi...
The Voyager 2 cosmic ray experiment observed intense electron fluxes in the middle magnetosphere of ...
The Cosmic Ray Subsystem aboard Voyager 2 measured large fluxes of trapped energetic protons and el...
Satellites orbiting within the magnetospheres of the giant planets are effective absorbers of trappe...
The Voyager 2 Cosmic Ray System found large-scale macrosignatures of satellite sweeping for MeV elec...
A large flux of > 100 MeV electrons were registered in the inner radiation belt on low-altitude sate...
The ring systems of Jupiter and Saturn, and their interaction with the magnetosphere were studied. O...
A large flux of > 100 MeV electrons were registered in the inner radiation belt on low-altitude s...
The energy spectra and angular distributions of electrons observed by Pioneer 11 as a function of ra...
The inner boundary of Saturn's electron radiation belts, near the planet's A‐ring (∼2.27 Rs), is stu...