The dynamics of the spin-spin problem in Celestial Mechanics
Adri\'an P. Bustamante, Alessandra Celletti, Christoph Lhotka

TL;DR
This paper explores the rotational dynamics of two ellipsoidal bodies under gravity, analyzing stability and resonances in various models including coupled spin-spin interactions and effects of dissipation.
Contribution
It introduces a comprehensive analysis of the full spin-spin problem, including coupled rotational dynamics, stability, and resonance behavior, extending previous spin-orbit models.
Findings
Stability depends on orbital eccentricity.
Coupling influences resonance behavior.
Dissipation affects stability and dynamics.
Abstract
This work investigates different models of rotational dynamics of two rigid bodies with the shape of an ellipsoid, moving under their gravitational influence. The focus of this study is on their behavior, their linear stability, and numerical investigation of the main resonances. We assume that the spin axes of the two bodies are perpendicular to the orbital plane and coinciding with the direction of their shortest physical axis. In the basic approximation, we assume that the orbits of the centers of mass are Keplerian and we retain the lowest order of the potential, according to which the rotational motions of the two bodies are decoupled, the so-called spin-orbit problem. When considering highest order approximation of the potential, the rotational motions become coupled giving rise to the so-called spin-spin problem. Finally, we release the assumption that the orbit is Keplerian,…
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