English

Enhanced C$_2$H$_2$ absorption within Jupiter's southern auroral oval from Juno UVS observations

Earth and Planetary Astrophysics 2023-03-15 v1 Space Physics

Abstract

Reflected sunlight observations from the Ultraviolet Spectrograph (UVS) on the Juno spacecraft were used to study the distribution of acetylene (C2_2H2_2) at Jupiter's south pole. We find that the shape of the C2_2H2_2 absorption feature varies significantly across the polar region, and this can be used to infer spatial variability in the C2_2H2_2 abundance. There is a localized region of enhanced C2_2H2_2 absorption which coincides with the location of Jupiter's southern polar aurora; the C2_2H2_2 abundance poleward of the auroral oval is a factor of 3 higher than adjacent quiescent, non-auroral longitudes. This builds on previous infrared studies which found enhanced C2_2H2_2 abundances within the northern auroral oval. This suggests that Jupiter's upper-atmosphere chemistry is being strongly influenced by the influx of charged auroral particles and demonstrates the necessity of developing ion-neutral photochemical models of Jupiter's polar regions.

Keywords

Cite

@article{arxiv.2302.10946,
  title  = {Enhanced C$_2$H$_2$ absorption within Jupiter's southern auroral oval from Juno UVS observations},
  author = {Rohini S. Giles and Vincent Hue and Thomas K. Greathouse and G. Randall Gladstone and Joshua A. Kammer and Maarten H. Versteeg and Bertrand Bonfond and Denis G. Grodent and Jean-Claude Gérard and James A. Sinclair and Scott J. Bolton and Steven M. Levin},
  journal= {arXiv preprint arXiv:2302.10946},
  year   = {2023}
}

Comments

Accepted in JGR: Planets