Parametric study of polar configurations around binaries
Abstract
Dynamical studies suggest that most of the circumbinary discs (CBDs) should be coplanar. However, under certain initial conditions, the CBD can evolve toward polar orientation. Here we extend the parametric study of polar configurations around detached close-in binaries through -body simulations. For polar configurations around binaries with mass ratios below , the nominal location of the mean motion resonance (MMR) predicts the limit of stability for . Alternatively, for or , the nominal location of the MMR is the closest stable region. The presence of a} giant planet increases the region of forbidden polar configurations around low mass ratio binaries with eccentricities with respect to rocky earth-like planets. For equal mass stars, the eccentricity excitation of polar orbits smoothly increases with decreasing distance to the binary. For , can reach values as high as . Finally, we studied polar configurations around and show that the region of stability is strongly affected by the relative positions of the nodes. The most stable configurations in the system correspond to polar particles, which are not expected to survive on longer time-scales due to the presence of the external perturber HD~.
Keywords
Cite
@article{arxiv.1907.08180,
title = {Parametric study of polar configurations around binaries},
author = {Cristian Giuppone and Nicolás Cuello},
journal= {arXiv preprint arXiv:1907.08180},
year = {2020}
}
Comments
9 pages. 7 figures. Accepted for publication in the special issue of the Journal of Physics: Conference Series aimed to the works presented at the Brazilian Colloquium on Orbital Dynamics - CBDO 2018