English

Constraining the PG 1553+113 binary hypothesis: interpreting hints of a new, 22-year period

High Energy Astrophysical Phenomena 2024-04-17 v2 Astrophysics of Galaxies

Abstract

PG 1553+113 is a well-known blazar exhibiting evidence of a  ⁣2.2\sim\! 2.2-yr quasi-periodic oscillation (QPO) in radio, optical, X-ray, and γ\gamma-ray bands. Since QPO mechanisms often predict multiple QPOs, we search for a second QPO in its historical optical light curve covering a century of observations. Despite challenging data quality issues, we find hints of a 21.8±4.721.8 \pm 4.7 yr oscillation. On its own, this  ⁣22\sim\! 22-yr period has a modest statistical significance of 1.6σ1.6\sigma when accounting for the look-elsewhere effect. However, the joint significance of both the 2.22.2- and 2222-yr periods arising from colored noise alone is 3.6σ\sim 3.6\sigma. The next peak of the 22-yr oscillation is predicted to occur around July 2025. We find that such a \sim\,10:1 relation between two periods can arise in the gas dynamics of a plausible supermassive black hole binary model of PG 1553+113. While the 22-yr QPO is preliminary, an interpretation of PG 1553+113's two QPOs in this binary model suggests that the binary engine has a mass ratio 0.2\gtrsim 0.2, an eccentricity 0.1\lesssim 0.1, and accretes from a disk with characteristic aspect ratio 0.03\sim 0.03. The putative binary radiates nHz gravitational waves, but the amplitude is 10100\sim10-100 times too low for detection by foreseeable pulsar timing arrays.

Keywords

Cite

@article{arxiv.2307.11696,
  title  = {Constraining the PG 1553+113 binary hypothesis: interpreting hints of a new, 22-year period},
  author = {Sagar Adhikari and Pablo Penil and John Ryan Westernacher-Schneider and Alberto Dominguez and Marco Ajello and Sara Buson and Alba Rico and Jonathan Zrake},
  journal= {arXiv preprint arXiv:2307.11696},
  year   = {2024}
}

Comments

20 pages, 15 figures, 1 table