From gas to ice giants: A unified mechanism for equatorial jets

Fuente: arXiv
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Hauptverfasser: Duer-Milner, Keren, Gavriel, Nimrod, Galanti, Eli, Tziperman, Eli, Kaspi, Yohai
Format: Preprint
Veröffentlicht: 2025
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author Duer-Milner, Keren
Gavriel, Nimrod
Galanti, Eli
Tziperman, Eli
Kaspi, Yohai
author_facet Duer-Milner, Keren
Gavriel, Nimrod
Galanti, Eli
Tziperman, Eli
Kaspi, Yohai
contents The equatorial jets dominating the dynamics of the Jovian planets exhibit two distinct types of zonal flows: strongly eastward in the gas giants (superrotation) and strongly westward in the ice giants (subrotation). Existing theories propose different mechanisms for these patterns, but no single mechanism has successfully explained both. However, the planetary parameters of the four Solar System giant planets suggest that a fundamentally different mechanism is unlikely. In this study, we show that convection-driven columnar structures can account for both eastward and westward equatorial jets, framing the phenomenon as a bifurcation. Consequently, both superrotation and subrotation emerge as stable branches of the same mechanistic solution. Our analysis of these solutions uncovers similarities in the properties of equatorial waves and the leading-order momentum balance. This study suggests that the fundamental dynamics governing equatorial jet formation may be more broadly applicable across the Jovian planets than previously believed, offering a unified explanation for their two distinct zonal wind patterns.
format Preprint
id arxiv_https___arxiv_org_abs_2510_08020
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle From gas to ice giants: A unified mechanism for equatorial jets
Duer-Milner, Keren
Gavriel, Nimrod
Galanti, Eli
Tziperman, Eli
Kaspi, Yohai
Earth and Planetary Astrophysics
The equatorial jets dominating the dynamics of the Jovian planets exhibit two distinct types of zonal flows: strongly eastward in the gas giants (superrotation) and strongly westward in the ice giants (subrotation). Existing theories propose different mechanisms for these patterns, but no single mechanism has successfully explained both. However, the planetary parameters of the four Solar System giant planets suggest that a fundamentally different mechanism is unlikely. In this study, we show that convection-driven columnar structures can account for both eastward and westward equatorial jets, framing the phenomenon as a bifurcation. Consequently, both superrotation and subrotation emerge as stable branches of the same mechanistic solution. Our analysis of these solutions uncovers similarities in the properties of equatorial waves and the leading-order momentum balance. This study suggests that the fundamental dynamics governing equatorial jet formation may be more broadly applicable across the Jovian planets than previously believed, offering a unified explanation for their two distinct zonal wind patterns.
title From gas to ice giants: A unified mechanism for equatorial jets
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2510.08020