Eccentricity dynamics of wide binaries -- I. The effect of Galactic tides
arXiv:2303.15531 · doi:10.1093/mnras/stad2073
Abstract
A major puzzle concerning the wide stellar binaries (semimajor axes \,AU) in the Solar neighborhood is the origin of their observed superthermal eccentricity distribution function (DF), which is well-approximated by with . This DF evolves under the combined influence of (i) tidal torques from the Galactic disk and (ii) scattering by passing stars, molecular clouds, and substructure. Recently, it was demonstrated that Galactic tides alone cannot produce a superthermal eccentricity DF from an initially isotropic, non-superthermal one, under the restrictive assumptions that the eccentricity DF was initially of power law form and then was rapidly phase-mixed toward a steady state by the tidal perturbation. In this paper we first prove analytically that this conclusion is valid at all times, regardless of these assumptions. We then adopt a thin Galactic disk model and numerically integrate the equations of motion for several ensembles of tidally perturbed wide binaries to study the time evolution in detail. We find that even non-power law DFs can be described by an effective power law index which accurately characterizes both their initial and final states, and that a DF with initial (effective or exact) power law index is transformed by Galactic tides into another power law with index on a timescale . In a companion paper, we investigate separately the effect of stellar scattering. As the GAIA data continues to improve, these results will place strong constraints on wide binary formation channels.
Updated to accepted version: 14 pages, 9 figures. Main result in Figure 7. Comments still welcome!
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- Massive stellar triples on the edge: A numerical study of the evolution and final outcomes of destabilized massive triples
- Wide-binary eccentricity distribution in young star clusters: dependence on the binary separation and mass
- Minimum-entropy constraints on galactic potentials
- Detection prospects for the GW background of Galactic (sub)solar mass primordial black holes