English

Identifying heavy stellar black holes at cosmological distances with next generation gravitational-wave observatories

High Energy Astrophysical Phenomena 2023-10-30 v1 General Relativity and Quantum Cosmology

Abstract

We investigate the detectability of single-event coalescing black hole binaries with total mass of 100600M100-600 M_{\odot} at cosmological distances (5z205 \lesssim z \lesssim 20) with the next generation of terrestrial gravitational wave observatories, specifically Einstein Telescope and Cosmic Explorer. Our ability to observe these binaries is limited by the low-frequency performance of the detectors. Higher-order Multipoles of the gravitational wave signal are observable in these systems, and detection of such multipoles serves to both b the mass range over which black hole binaries are observable and improve the recovery of their individual masses and redshift. For high redshift systems of 200M\sim 200 M_{\odot} we will be able to confidently infer that the redshift is at least z=12z=12, and for systems of 400M\sim 400 M_{\odot} we can infer a minimum redshift of at least z=8z=8. We discuss the impact that these observations will have in narrowing uncertainties on the existence of the pair-instability mass-gap, and their implications on the formation of the first stellar black holes that could be seeds for the growth of supermassive black holes powering high-zz quasars.

Keywords

Cite

@article{arxiv.2310.18158,
  title  = {Identifying heavy stellar black holes at cosmological distances with next generation gravitational-wave observatories},
  author = {Stephen Fairhurst and Cameron Mills and Monica Colpi and Raffaella Schneider and Alberto Sesana and Alessandro Trinca and Rosa Valiante},
  journal= {arXiv preprint arXiv:2310.18158},
  year   = {2023}
}

Comments

19 pages, 16 figures