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Hierarchical Three-Body Problem at High Eccentricities = Simple Pendulum II: Octupole including Brown's Hamiltonian

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arxiv 2408.04003 v1 pith:X4MZZ7TB submitted 2024-08-07 astro-ph.EP astro-ph.HE

classification astro-ph.EPastro-ph.HE
keywords browneccentricityhamiltonianhighanalyticallyeffecthierarchicaloctupole
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The very long-term evolution of the hierarchical restricted three-body problem with a massive perturber is analyzed analytically in the high eccentricity regime. Perturbations on the time scale of the outer orbit can accumulate over long timescales and be comparable to the effect of the octupole term. These perturbations are described by Brown's Hamiltonian - having different forms in the literature. We show that at the high eccentricity regime - the effect of Brown's Hamiltonian is an azimuthal precesssion of the eccentricity vector and can be solved analytically. In fact, the dynamics are equivalent to a simple pendulum model allowing an explicit flip criterion.

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Cited by 1 Pith paper

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  1. Dynamical friction can flip the hierarchical three-body system

    gr-qc 2024-11 conditional novelty 6.0 of 10

    Dynamical friction from a dark matter spike can restore orbital flips in hierarchical triple systems that Brown's Hamiltonian would otherwise suppress.

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