English

The water abundance in Jupiter's equatorial zone

Earth and Planetary Astrophysics 2020-12-21 v1

Abstract

Oxygen is the most common element after hydrogen and helium in Jupiter's atmosphere, and may have been the primary condensable (as water ice) in the protoplanetary disk. Prior to the Juno mission, in situ measurements of Jupiter's water abundance were obtained from the Galileo Probe, which dropped into a meteorologically anomalous site. The findings of the Galileo Probe were inconclusive because the concentration of water was still increasing when the probe died. Here, we initially report on the water abundance in the equatorial region, from 0 to 4 degrees north latitude, based on 1.25 to 22 GHz data from Juno Microwave radiometer probing approximately 0.7 to 30 bars pressure. Because Juno discovered the deep atmosphere to be surprisingly variable as a function of latitude, it remains to confirm whether the equatorial abundance represents Jupiter's global water abundance. The water abundance at the equatorial region is inferred to be 2.51.6+2.2×1032.5_{-1.6}^{+2.2}\times10^3 ppm, or 2.71.7+2.42.7_{-1.7}^{+2.4} times the protosolar oxygen elemental ratio to H (1σ\sigma uncertainties). If reflective of the global water abundance, the result suggests that the planetesimals formed Jupiter are unlikely to be water-rich clathrate hydrates.

Keywords

Cite

@article{arxiv.2012.10305,
  title  = {The water abundance in Jupiter's equatorial zone},
  author = {Cheng Li and Andrew Ingersoll and Scott Bolton and Steven Levin and Michael Janssen and Sushil Atreya and Jonathan Lunine and Paul Steffes and Shannon Brown and Tristan Guillot and Michael Allison and John Arballo and Amadeo Bellotti and Virgil Adumitroaie and Samuel Gulkis and Amoree Hodges and Liming Li and Sidharth Misra and Glenn Orton and Fabiano Oyafuso and Daniel Santos-Costa and Hunter Waite and Zhimeng Zhang},
  journal= {arXiv preprint arXiv:2012.10305},
  year   = {2020}
}

Comments

27 pages, 7 figures

R2 v1 2026-06-23T21:04:47.508Z