4.5 Article

Resistive MHD simulations of Ganymede's magnetosphere - 2. Birkeland currents and particle energetics

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AMER GEOPHYSICAL UNION
DOI: 10.1029/2001JA005072

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Birkeland currents; Ganymede; Jupiter; magnetosphere; MHD simulations; satellite magnetosphere interactions

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[1] The Birkeland current flows generated by Ganymede's magnetospheric interaction with the Jovian magnetosphere are simulated by using a resistive MHD code. The total field-aligned current is estimated to be I-parallel to approximate to 6.6 x 10(5) A. The power delivered to the Jovian auroral zone and to Ganymede's polar surface via energetic charged particle bombardment is about 6 x 10(9) W. Ions and electrons could gain as much as 2.9-48 keV at the reconnection site of the magnetopause. The production rate of oxygen and water molecules from the associated ion sputtering effect (Q(II) approximate to 10(25) - 10(26) molecules/s, Q(I) approximate to 1-4 10(26) molecules/s) can be derived from polar cap precipitation of the ambient Jovian energetic ions. Because Ganymede's Birkeland current system is highly time-variable in response to the Jovian magnetic field variations, the footpoints'' of the accelerated ion beams could have rapid changes and hence the motion of the hotspots of the oxygen airglow emission as observed by the Hubble Space Telescope.

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