Eccentricity dynamics of wide binaries -- II. The effect of stellar encounters and constraints on formation channels

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Autori principali: Hamilton, Chris, Modak, Shaunak
Natura: Preprint
Pubblicazione: 2023
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author Hamilton, Chris
Modak, Shaunak
author_facet Hamilton, Chris
Modak, Shaunak
contents GAIA wide stellar binaries (separations $\sim 10^3-10^{4.5}$ AU) are observed to have a superthermal eccentricity distribution function (DF), well-fit by $P(e) \propto e^α$ with $α\sim 1.2$. In Modak \& Hamilton (2023), we proved that this DF cannot have been produced by Galactic tidal torques starting from any realistic DF that was not already superthermal. Here, we consider the other major dynamical effect on wide binaries: encounters with passing stars. We derive and solve the Fokker-Planck equation governing the evolution of binaries in semimajor axis and eccentricity under many weak, impulsive, penetrative stellar encounters. We show analytically that these encounters drive the eccentricity DF towards thermal on the same timescale as they drive the semimajor axes $a$ towards disruption, $t_\mathrm{ion} \sim 4\,\mathrm{Gyr}\,(a/10^4\,\mathrm{AU})^{-1}$. We conclude that the observed superthermal DF must derive from an even more superthermal (i.e. higher $α$) birth distribution. This requirement places strong constraints on the dominant binary formation channels. A testable prediction of our theory is that $α$ should be a monotonically decreasing function of binary age.
format Preprint
id arxiv_https___arxiv_org_abs_2311_04352
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Eccentricity dynamics of wide binaries -- II. The effect of stellar encounters and constraints on formation channels
Hamilton, Chris
Modak, Shaunak
Astrophysics of Galaxies
Solar and Stellar Astrophysics
GAIA wide stellar binaries (separations $\sim 10^3-10^{4.5}$ AU) are observed to have a superthermal eccentricity distribution function (DF), well-fit by $P(e) \propto e^α$ with $α\sim 1.2$. In Modak \& Hamilton (2023), we proved that this DF cannot have been produced by Galactic tidal torques starting from any realistic DF that was not already superthermal. Here, we consider the other major dynamical effect on wide binaries: encounters with passing stars. We derive and solve the Fokker-Planck equation governing the evolution of binaries in semimajor axis and eccentricity under many weak, impulsive, penetrative stellar encounters. We show analytically that these encounters drive the eccentricity DF towards thermal on the same timescale as they drive the semimajor axes $a$ towards disruption, $t_\mathrm{ion} \sim 4\,\mathrm{Gyr}\,(a/10^4\,\mathrm{AU})^{-1}$. We conclude that the observed superthermal DF must derive from an even more superthermal (i.e. higher $α$) birth distribution. This requirement places strong constraints on the dominant binary formation channels. A testable prediction of our theory is that $α$ should be a monotonically decreasing function of binary age.
title Eccentricity dynamics of wide binaries -- II. The effect of stellar encounters and constraints on formation channels
topic Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2311.04352