English

Radio Power from Direct-Collapse Black Holes

Astrophysics of Galaxies 2022-05-04 v4

Abstract

Direct-collapse black holes (DCBHs) forming at zz \sim 20 are currently the leading candidates for the seeds of the first quasars, over 200 of which have now been found at z>z > 6. Recent studies suggest that DCBHs could be detected in the near infrared by the James Webb Space Telescope, Euclid, and the Roman Space Telescope. However, new radio telescopes with unprecedented sensitivities such as the Square Kilometer Array (SKA) and the Next-Generation Very Large Array (ngVLA) may open another window on the properties of DCBHs in the coming decade. Here we estimate the radio flux from DCBHs at birth at z=z = 8 - 20 with several fundamental planes of black hole accretion. We find that they could be detected at zz \sim 8 by the SKA-FIN all-sky survey. Furthermore, SKA and ngVLA could discover 106^6 - 107^7 MM_{\odot} BHs out to zz \sim 20, probing the formation pathways of the first quasars in the Universe.

Keywords

Cite

@article{arxiv.2110.00012,
  title  = {Radio Power from Direct-Collapse Black Holes},
  author = {Daniel J. Whalen and Mar Mezcua and Samuel J. Patrick and Avery Meiksin and Muhammad A. Latif},
  journal= {arXiv preprint arXiv:2110.00012},
  year   = {2022}
}

Comments

6 pages. 4 figures, accepted by ApJL