The large-scale energetic ion layer in the high latitude Jovian magnetosphere as revealed by Ulysses/HI-SCALE cross-field intensity-gradient measurements
G.C. Anagnostopoulos, I. Karanikola, P.K. Marhavilas, E.T. Sarris

TL;DR
This study uses Ulysses/HI-SCALE data to confirm the existence of a large-scale energetic ion layer in the high latitude Jovian magnetosphere, revealing its structure, dynamics, and boundary features.
Contribution
It provides new evidence for a persistent energetic particle layer at high latitudes, expanding understanding of Jovian magnetospheric structure beyond previous models.
Findings
Confirmed energetic particle layer in the north hemisphere during inbound trajectory.
Detected energetic proton magnetopause boundary layer during outbound trajectory.
Observed persistent northward and southward intensity gradients indicating a stable high-latitude layer.
Abstract
Ulysses investigated the high latitude Jovian magnetosphere for a second time after Pioneer 11 mission and gave us the opportunity to search the structure and the dynamics of this giant magnetosphere above the magnetodisc. Kivelson(1976) and Kennel & Coroniti(1979) reported that Pioneer 11 observed energetic particle intensities at high latitudes at the same level with those measured in the plasma sheet and inferred that they were not consistent with the magnetodisc model. Ulysses observations supported the idea about a large-scale layer of energetic ions and electrons in the outer high latitude Jovian magnetosphere (Cowley et al.1996; Anagnostopoulos et al. 2001). This study perform a number of further tests for the existence of the large scale layer of energetic ions in the outer high latitude Jovian magnetosphere by studying appropriate cross-B field anisotropies in order to monitor…
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