English

Unexpected Long-Term Variability in Jupiter's Tropospheric Temperatures

Earth and Planetary Astrophysics 2023-02-17 v3

Abstract

An essential component of planetary climatology is knowledge of the tropospheric temperature field and its variability. Previous studies of Jupiter hinted at periodic behavior that was non-seasonal, as well as dynamical relationships between tropospheric and stratospheric temperatures. However, these observations were made over time frames shorter than Jupiter's orbit or they used sparse sampling. We derived upper-tropospheric (300-mbar) temperatures over 40 years, extending those studies to cover several orbits of Jupiter, revealing unexpected results. Periodicities of 4, 7 8-9 and 10-14 years were discovered that involved different latitude bands and seem disconnected from seasonal changes in solar heating. Anti-correlations of variability in opposite hemispheres were particularly striking at 16, 22 and 30 degrees from the equator. Equatorial temperature variations are also anticorrelated with those 60-70 km above. Such behavior suggests a top-down control of equatorial tropospheric temperatures from stratospheric dynamics. Realistic future global climate models must address the origins of these variations in preparation for their extension to a wider array of gas-giant exoplanets.

Keywords

Cite

@article{arxiv.2211.04398,
  title  = {Unexpected Long-Term Variability in Jupiter's Tropospheric Temperatures},
  author = {Glenn S. Orton and Arrate Antunano and Leigh N. Fletcher and James A. Sinclair and Thomas W. Momary and Takuya Fujiyoshi and Padma Yanamandra-Fisher and Padraig T. Donnelly and Jennifer J. Greco and Anna V. Payne and Kimberly A. Boydstun and Laura E. Wakefield},
  journal= {arXiv preprint arXiv:2211.04398},
  year   = {2023}
}

Comments

Primary file: 16 pages, 5 figures. Supplemental File (attached): 12 pages, 3 figures, 1 table

R2 v1 2026-06-28T05:26:33.114Z