Physics
Scientific paper
Nov 1980
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1980jgr....85.5959s&link_type=abstract
Journal of Geophysical Research, vol. 85, Nov. 1, 1980, p. 5959-5968.
Physics
27
Io, Jupiter (Planet), Planetary Atmospheres, Space Plasmas, Current Sheets, Lines Of Force, Mach Number, Magnetohydrodynamic Flow, Planetary Magnetic Fields, Toroidal Plasmas, Jupiter, Satellites, Io, Plasmas, Interactions, Toruses, Comparisons, Magnetic Fields, Models, Distribution, Charged Particles, Lecp, Flow, Voyager 1, Magnetometer, Magnitude, Diagrams, Magnetosphere, Particles, Data, Flux, Flux Tubes, Observations, Analysis, Perturbations, Alfven Waves
Scientific paper
The interaction of Io with its plasma torus and the Jovian magnetic field is described and examined in the context of several currently popular models. Three specific matters are addressed. First, features implied by sub-Alfvenic flow which must be common to all models are discussed. Next, the magnetic signature observed near Io by the Goddard Space Flight Center Voyager 1 magnetometer is examined and it is pointed out that the preliminary estimate of 5,000,000 A current may be an overestimate. Good fits are obtained with alternative current distributions which yield currents as small as 700,000 A through Io. The best fits are obtained for an Alfven Mach number of 0.15, but good fits are also found for Alfven Mach numbers between 0.1 and 0.25. Lastly, the crucial role of charged particle data for probing the near Io interaction is pointed out. Published data from the low energy charged particle (LECP) detector are made to suggest that Io has an intrinsic magnetic field of magnitude comparable with earlier estimates. Predictions are made which can test this picture as further data become available.
Galland Kivelson Margaret
Slavin James Arthur
Southwood David J.
Walker Ray J.
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