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Evidence for multiple Ferrel-like cells on Jupiter

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arxiv 2110.07255 v1 pith:LRBZLWNV submitted 2021-10-14 astro-ph.EP

classification astro-ph.EP
keywords cellsjupitermultiplecirculationevidenceearthexistencehemisphere
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Jupiter's atmosphere is dominated by multiple jet streams which are strongly tied to its 3D atmospheric circulation. Lacking a rigid bottom boundary, several models exist for how the meridional circulation extends into the planetary interior. Here we show, collecting evidence from multiple instruments of the Juno mission, the existence of mid-latitudinal meridional circulation cells which are driven by turbulence, similar to the Ferrel cells on Earth. Different than Earth, which contains only one such cell in each hemisphere, the larger, faster rotating Jupiter can incorporate multiple cells. The cells form regions of upwelling and downwelling, which we show are clearly evident in Juno's microwave data between latitude 60S and 60N. The existence of these cells is confirmed by reproducing the ammonia observations using a simplistic model. This study solves a long-standing puzzle regarding the nature of Jupiter's sub-cloud dynamics and provides evidence for 8 cells in each Jovian hemisphere.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Reconciling Jupiter's Vertical Motions with the Observed Cloud Structure in the Upper Troposphere

    astro-ph.EP 2025-09 conditional novelty 6.0 of 10

    Jupiter's upper-troposphere vertical motions inferred from the transformed Eulerian mean circulation have upwelling in zones and downwelling in belts, matching the observed cloud structure and resolving the apparent c...

  2. Wind shear and the role of eddy vapor transport in driving water convection on Jupiter

    astro-ph.EP 2025-05 conditional novelty 6.0 of 10

    Using the EPIC GCM, the authors find that eddy transport of water vapor, not thermal or mechanical forcing, dominates CAPE generation and drives moist convection on Jupiter.

  3. Cloud and ammonia vertical profiles in the equatorial atmosphere of Jupiter determined from visible to near-IR observations made by VLT/MUSE, Cassini/VIMS, IRTF/SpeX and Juno/JIRAM

    astro-ph.EP 2026-07 conditional novelty 5.0 of 10

    Jupiter's equatorial spectrum from visible to 5 μm is fit by three cloud layers — a thick 1–2 bar deck, a thin ~0.55-bar ammonia-ice-like layer, and deep chromophores — with a two-step ammonia profile and no detached ...

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