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Alternating North-South Brightness Ratio of Ganymede's Auroral Ovals: Hubble Space Telescope Observations Around the Juno PJ34 Flyby

  • Joachim Saur
  • , Stefan Duling
  • , Alexandre Wennmacher
  • , Clarissa Willmes
  • , Lorenz Roth
  • , Darrell F. Strobel
  • , Frédéric Allegrini
  • , Fran Bagenal
  • , Scott J. Bolton
  • , Bertrand Bonfond
  • , George Clark
  • , Randy Gladstone
  • , Thomas K. Greathouse
  • , Denis C. Grodent
  • , Candice J. Hansen
  • , William S. Kurth
  • , Glenn S. Orton
  • , Kurt D. Retherford
  • , Abigail M. Rymer
  • , Ali H. Sulaiman

Research output: Contribution to journalArticlepeer-review

Abstract

We report results of Hubble Space Telescope observations from Ganymede's orbitally trailing side which were taken around the flyby of the Juno spacecraft on 7 June 2021. We find that Ganymede's northern and southern auroral ovals alternate in brightness such that the oval facing Jupiter's magnetospheric plasma sheet is brighter than the other one. This suggests that the generator that powers Ganymede's aurora is the momentum of the Jovian plasma sheet north and south of Ganymede's magnetosphere. Magnetic coupling of Ganymede to the plasma sheet above and below the moon causes asymmetric magnetic stresses and electromagnetic energy fluxes ultimately powering the auroral acceleration process. No clear statistically significant timevariability of the auroral emission on short time scales of 100s could be resolved. We show that electron energy fluxes of several tens of mW m−2 are required for its OI 1,356 Å emission making Ganymede a very poor auroral emitter.

Original languageEnglish (US)
Article numbere2022GL098600
JournalGeophysical Research Letters
Volume49
Issue number23
DOIs
StatePublished - Dec 16 2022
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2022 The Authors.

Keywords

  • Ganymede
  • Hubble Space Telescope
  • Juno spacecraft
  • auroral ovals

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