Secular Orbit Evolution in Systems with a Strong External Perturber—A Simple and Accurate Model

  • Andrade-Ines E
  • Eggl S
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Abstract

We present a semi-analytical correction to the seminal solution for the secular motion of a planet’s orbit under gravitational influence of an external perturber derived by Heppenheimer. A comparison between analytical predictions and numerical simulations allows us to determine corrective factors for the secular frequency and forced eccentricity in the coplanar restricted three-body problem. The correction is given in the form of a polynomial function of the system’s parameters that can be applied to first-order forced eccentricity and secular frequency estimates. The resulting secular equations are simple, straight forward to use, and improve the fidelity of Heppenheimers solution well beyond higher-order models. The quality and convergence of the corrected secular equations are tested for a wide range of parameters and limits of its applicability are given.

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Andrade-Ines, E., & Eggl, S. (2017). Secular Orbit Evolution in Systems with a Strong External Perturber—A Simple and Accurate Model. The Astronomical Journal, 153(4), 148. https://doi.org/10.3847/1538-3881/153/4/148

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