English

Cosmic reionization after Planck II: contribution from quasars

Cosmology and Nongalactic Astrophysics 2017-11-29 v3

Abstract

In the light of the recent Planck downward revision of the electron scattering optical depth, and of the discovery of a faint AGN population at z>4z > 4, we reassess the actual contribution of quasars to cosmic reionization. To this aim, we extend our previous MCMC-based data-constrained semi-analytic reionization model and study the role of quasars on global reionization history. We find that, the quasars can alone reionize the Universe only for models with very high AGN emissivities at high redshift. These models are still allowed by the recent CMB data and most of the observations related to HI reionization. However, they predict an extended and early HeII reionization ending at z4z\gtrsim4 and a much slower evolution in the mean HeII Ly-α\alpha forest opacity than what the actual observation suggests. Thus when we further constrain our model against the HeII Ly-α\alpha forest data, this AGN-dominated scenario is found to be clearly ruled out at 2-σ\sigma limits. The data seems to favour a standard two-component picture where quasar contributions become negligible at z6z\gtrsim6 and a non-zero escape fraction of 10%\sim10\% is needed from early-epoch galaxies. For such models, mean neutral hydrogen fraction decreases to 104\sim10^{-4} at z=6.2z=6.2 from 0.8\sim0.8 at z=10.0z=10.0 and helium becomes doubly ionized at much later time, z3z\sim3. We find that, these models are as well in good agreement with the observed thermal evolution of IGM as opposed to models with very high AGN emissivities.

Keywords

Cite

@article{arxiv.1606.02719,
  title  = {Cosmic reionization after Planck II: contribution from quasars},
  author = {Sourav Mitra and T. Roy Choudhury and Andrea Ferrara},
  journal= {arXiv preprint arXiv:1606.02719},
  year   = {2017}
}

Comments

10 pages, MNRAS, accepted

R2 v1 2026-06-22T14:20:59.313Z