English

Revising natal kick prescriptions in population synthesis simulations

High Energy Astrophysical Phenomena 2020-03-25 v2

Abstract

Natal kicks are matter of debate and significantly affect the merger rate density of compact objects. Here, we present a new simple formalism for natal kicks of neutron stars (NSs) and black holes (BHs). We describe the magnitude of the kick as vkickfH05mejmrem1v_{\rm kick}\propto{}f_{\rm H05}\,{}\,{}m_{\rm ej}\,{}\,{}m_{\rm rem}^{-1}, where fH05f_{\rm H05} is a normalization factor, drawn from a Maxwellian distribution with one-dimensional root-mean-square velocity σ=265\sigma{}=265~km~s1^{-1}, mejm_{\rm ej} is the mass of the supernova (SN) ejecta and mremm_{\rm rem} is the mass of the compact object. This formalism matches the proper motions of young Galactic pulsars and can naturally account for the differences between core-collapse SNe of single stars, electron-capture SNe and ultra-stripped SNe occurring in interacting binaries. Finally, we use our new kick formalism to estimate the local merger rate density of binary NSs (RBNSR_{\rm BNS}), BH--NS binaries (RBHNSR_{\rm BHNS}) and binary BHs (RBBHR_{\rm BBH}), based on the cosmic star formation rate density and metallicity evolution. In our fiducial model, we find RBNS600R_{\rm BNS}\sim{}600~Gpc3^{-3}~yr1^{-1}, RBHNS10R_{\rm BHNS}\sim{}10~Gpc3^{-3}~yr1^{-1} and RBBH50R_{\rm BBH}\sim{}50~Gpc3^{-3}~yr1^{-1}, fairly consistent with the numbers inferred from the LIGO-Virgo collaboration.

Keywords

Cite

@article{arxiv.1909.06385,
  title  = {Revising natal kick prescriptions in population synthesis simulations},
  author = {Nicola Giacobbo and Michela Mapelli},
  journal= {arXiv preprint arXiv:1909.06385},
  year   = {2020}
}

Comments

13 pages, 5 figures, 2 table, ApJ, in press