English

Pulsar Timing Array Constraints on the Merger Timescale of Subparsec Supermassive Black Hole Binary Candidates

High Energy Astrophysical Phenomena 2020-10-13 v2 Astrophysics of Galaxies General Relativity and Quantum Cosmology

Abstract

We estimate the merger timescale of spectroscopically-selected, subparsec supermassive black hole binary (SMBHB) candidates by comparing their expected contribution to the gravitational wave background (GWB) with the sensitivity of current pulsar timing array (PTA) experiments and in particular, with the latest upper limit placed by the North American Nanohertz Observatory for Gravitational Waves (NANOGrav). We find that the average timescale to coalescence of such SMBHBs is tevol>6×104\langle t_{\rm evol} \rangle > 6\times 10^4\,yr, assuming that their orbital evolution in the PTA frequency band is driven by emission of gravitational waves. If some fraction of SMBHBs do not reside in spectroscopically detected active galaxies, and their incidence in active and inactive galaxies is similar, then the merger timescale could be 10\sim 10 times longer, tevol>6×105\langle t_{\rm evol} \rangle > 6\times 10^5\,yr. These limits are consistent with the range of timescales predicted by theoretical models and imply that all the SMBHB candidates in our spectroscopic sample could be binaries without violating the observational constraints on the GWB. This result illustrates the power of the multi-messenger approach, facilitated by the PTAs, in providing an independent statistical test of the nature of SMBHB candidates discovered in electromagnetic searches.

Keywords

Cite

@article{arxiv.2006.12518,
  title  = {Pulsar Timing Array Constraints on the Merger Timescale of Subparsec Supermassive Black Hole Binary Candidates},
  author = {Khai Nguyen and Tamara Bogdanovic and Jessie C. Runnoe and Stephen R. Taylor and Alberto Sesana and Michael Eracleous and Steinn Sigurdsson},
  journal= {arXiv preprint arXiv:2006.12518},
  year   = {2020}
}

Comments

Published in ApJL (9 pages, 3 figures)