4.5 Article

A Physical Model of the Proton Radiation Belts of Jupiter inside Europa's Orbit

Journal

JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS
Volume 123, Issue 5, Pages 3512-3532

Publisher

AMER GEOPHYSICAL UNION
DOI: 10.1029/2018JA025216

Keywords

Jupiter; proton; radiation belts; physical modeling; wave-particle interaction

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A physical model of the Jovian trapped protons with kinetic energies higher than 1MeV inward of the orbit of the icy moon Europa is presented. The model, named Salammbo, takes into account the radial diffusion process, the absorption effect of the Jovian moons, and the Coulomb collisions and charge exchanges with the cold plasma and neutral populations of the inner Jovian magnetosphere. Preliminary modeling of the wave-particle interaction with electromagnetic ion cyclotron waves near the moon Io is also performed. Salammbo is validated against in situ proton measurements of Pioneer 10, Pioneer 11, Voyager 1, Galileo Probe, and Galileo Orbiter. A prominent feature of the MeV proton intensity distribution in the modeled area is the 2 orders of magnitude flux depletion observed in MeV measurements near the orbit of Io. Our simulations reveal that this is not due to direct interactions with the moon or its neutral environment but results from scattering of the protons by electromagnetic ion cyclotron waves.

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