English

Modelling uncertainties in wide binary constraints on primordial black holes

Astrophysics of Galaxies 2023-07-25 v2

Abstract

Dark matter in the form of compact objects with mass Mco10MM_{\rm co} \gtrsim 10 M_{\odot} can be constrained by its dynamical effects on wide binary stars. Motivated by the recent interest in Primordial Black Hole dark matter, we revisit the theoretical modelling involved in these constraints. We improve on previous studies in several ways. Specifically, we i) implement a physically motivated model for the initial wide-binary semi-major axis distribution, ii) include unbound binaries, and iii) take into account the uncertainty in the relationship between semi-major axis and observed angular separation. These effects all tend to increase the predicted number of wide binaries (for a given compact object population). Therefore the constraints on the halo fraction in compact objects, fcof_{\rm co}, are significantly weakened. For the wide binary sample used in the most recent calculation of the constraints, we find the fraction of halo dark matter in compact objects is fco<1f_{\rm co} < 1 for Mco300MM_{\rm co} \approx 300 \, M_{\odot}, tightening with increasing McoM_{\rm co} to fco<0.26f_{\rm co} < 0.26 for Mco1000MM_{\rm co} \gtrsim 1000 \, M_{\odot}.

Keywords

Cite

@article{arxiv.2207.08668,
  title  = {Modelling uncertainties in wide binary constraints on primordial black holes},
  author = {Emily Tyler and Anne M. Green and Simon P. Goodwin},
  journal= {arXiv preprint arXiv:2207.08668},
  year   = {2023}
}

Comments

8 pages, 4 figures, v2: version accepted to appear in MNRAS with additional discussion (no changes to results)