The Encke and Keeler Gaps as Chirikov–Wisdom Effects

We consider and explain the Encke and Keeler Gaps in the A ring of Saturn as Chirikov–Wisdom effects, namely, as due to accumulation and overlap of the first-order mean-motion resonances of the ring particles with satellites Pan and Daphnis. An analytical improvement of Wisdom’s formula for the radial width of the “planetary” (here, satellite’s) chaotic zone is provided. It accounts for specific properties of the system: large number of interacting resonances in the multiplet, and their large (similar to each other, by the order of magnitude) amplitudes. Using the improved theory, we show that the width of the Encke Gap is accurately predicted, while the theoretically estimated Keeler Gap width is two times greater than the actual one. The disparity in the latter case is tentatively explained by the relatively small mass of Daphnis (two orders of magnitude less than that of Pan); when mass is so small, one has to take into account the central regular (horseshoe-orbit) part of the Gap.

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Publication Details

Journal
Journal of Experimental and Theoretical Physics Letters
Published
2026-09-14
DOI
https://doi.org/10.1134/s0021364026607633
Primary Topic
Astro and Planetary Science
Type
article
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article

The Encke and Keeler Gaps as Chirikov–Wisdom Effects

И. И. Шевченко, S. A. Drobchik
Journal of Experimental and Theoretical Physics Letters
Astro and Planetary Science
article

The Encke and Keeler Gaps as Chirikov–Wisdom Effects

И. И. Шевченко, S. A. Drobchik
article en

Abstract

We consider and explain the Encke and Keeler Gaps in the A ring of Saturn as Chirikov–Wisdom effects, namely, as due to accumulation and overlap of the first-order mean-motion resonances of the ring particles with satellites Pan and Daphnis. An analytical improvement of Wisdom’s formula for the radial width of the “planetary” (here, satellite’s) chaotic zone is provided. It accounts for specific properties of the system: large number of interacting resonances in the multiplet, and their large (similar to each other, by the order of magnitude) amplitudes. Using the improved theory, we show that the width of the Encke Gap is accurately predicted, while the theoretically estimated Keeler Gap width is two times greater than the actual one. The disparity in the latter case is tentatively explained by the relatively small mass of Daphnis (two orders of magnitude less than that of Pan); when mass is so small, one has to take into account the central regular (horseshoe-orbit) part of the Gap.

Journal of Experimental and Theoretical Physics Letters
Openalex Percentile: Top 10%
Astro and Planetary Science
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