English

On the Detection of Supermassive Primordial Stars. II. Blue Supergiants

Astrophysics of Galaxies 2019-07-24 v2

Abstract

Supermassive primordial stars in hot, atomically-cooling haloes at zz \sim 15 - 20 may have given birth to the first quasars in the universe. Most simulations of these rapidly accreting stars suggest that they are red, cool hypergiants, but more recent models indicate that some may have been bluer and hotter, with surface temperatures of 20,000 - 40,000 K. These stars have spectral features that are quite distinct from those of cooler stars and may have different detection limits in the near infrared (NIR) today. Here, we present spectra and AB magnitudes for hot, blue supermassive primordial stars calculated with the TLUSTY and CLOUDY codes. We find that photometric detections of these stars by the James Webb Space Telescope (JWST) will be limited to zz \lesssim 10 - 12, lower redshifts than those at which red stars can be found, because of quenching by their accretion envelopes. With moderate gravitational lensing, Euclid and the Wide-Field Infrared Space Telescope (WFIRST) could detect blue supermassive stars out to similar redshifts in wide-field surveys.

Keywords

Cite

@article{arxiv.1904.01507,
  title  = {On the Detection of Supermassive Primordial Stars. II. Blue Supergiants},
  author = {Marco Surace and Erik Zackrisson and Daniel J. Whalen and Tilman Hartwig and S. C. O. Glover and Tyrone E. Woods and Alexander Heger},
  journal= {arXiv preprint arXiv:1904.01507},
  year   = {2019}
}

Comments

9 pages, 5 figures, accepted by MNRAS