English

GW170817A as a Hierarchical Black Hole Merger

High Energy Astrophysical Phenomena 2020-02-26 v2

Abstract

Despite the rapidly growing number of stellar-mass binary black hole mergers discovered through gravitational waves, the origin of these binaries is still not known. In galactic centers, black holes can be brought to each others' proximity by dynamical processes, resulting in mergers. It is also possible that black holes formed in previous mergers encounter new black holes, resulting in so-called hierarchical mergers. Hierarchical events carry signatures such as higher-than usual black hole mass and spin. Here we show that the recently reported gravitational-wave candidate, GW170817A, could be the result of such a hierarchical merger. In particular, its chirp mass 40\sim40 M_\odot and effective spin of χeff0.5\chi_{\rm eff}\sim0.5 are the typically expected values from hierarchical mergers within the disks of active galactic nuclei. We find that the reconstructed parameters of GW170817A strongly favor a hierarchical merger origin over having been produced by an isolated binary origin (with an Odds ratio of >103>10^3, after accounting for differences between the expected rates of hierarchical versus isolated mergers)

Keywords

Cite

@article{arxiv.1911.11142,
  title  = {GW170817A as a Hierarchical Black Hole Merger},
  author = {V. Gayathri and I. Bartos and Z. Haiman and S. Klimenko and B. Kocsis and S. Marka and Y. Yang},
  journal= {arXiv preprint arXiv:1911.11142},
  year   = {2020}
}

Comments

6 pages, 3 figures