English

Dynamics of binary black holes in young star clusters: the impact of cluster mass and long-term evolution

Astrophysics of Galaxies 2022-10-12 v2

Abstract

Dynamical interactions in dense star clusters are considered one of the most effective formation channels of binary black holes (BBHs). Here, we present direct NN-body simulations of two different star cluster families: low-mass (500800\sim{500-800} M_\odot) and relatively high-mass star clusters (5000\ge{5000} M_\odot). We show that the formation channels of BBHs in low- and high-mass star clusters are extremely different and lead to two completely distinct populations of BBH mergers. Low-mass clusters host mainly low-mass BBHs born from binary evolution, while BBHs in high-mass clusters are relatively massive (chirp mass up to 100\sim{100} M_\odot) and driven by dynamical exchanges. Tidal disruption dramatically quenches the formation and dynamical evolution of BBHs in low-mass clusters on a very short timescale (100\lesssim{100} Myr), while BBHs in high-mass clusters undergo effective dynamical hardening until the end of our simulations (1.5 Gyr). In high-mass clusters we find that 8\% of BBHs have primary mass in the pair-instability mass gap, all of them born via stellar collisions, while only one BBH with primary mass in the mass gap forms in low-mass clusters. These differences are crucial for the interpretation of the formation channels of gravitational-wave sources.

Keywords

Cite

@article{arxiv.2203.08163,
  title  = {Dynamics of binary black holes in young star clusters: the impact of cluster mass and long-term evolution},
  author = {Stefano Torniamenti and Sara Rastello and Michela Mapelli and Ugo N. Di Carlo and Alessandro Ballone and Mario Pasquato},
  journal= {arXiv preprint arXiv:2203.08163},
  year   = {2022}
}

Comments

14 pages, 9 figures, 2 tables. Revised version submitted after fixing typos. Comments welcome