English

Measuring the Density Fields around Bright Quasars at $z\sim 6$ with XQR-30 Spectra

Astrophysics of Galaxies 2022-06-01 v1 Cosmology and Nongalactic Astrophysics

Abstract

Measuring the density of the intergalactic medium using quasar sightlines in the epoch of reionization is challenging due to the saturation of Lyman-α\alpha absorption. Near a luminous quasar, however, the enhanced radiation creates a proximity zone observable in the quasar spectra where the Lyman-α\alpha absorption is not saturated. In this study, we use 1010 high-resolution (R10,000R\gtrsim 10,000) z6z\sim 6 quasar spectra from the extended XQR-30 sample to measure the density field in the quasar proximity zones. We find a variety of environments within 33 pMpc distance from the quasars. We compare the observed density cumulative distribution function (CDF) with models from the Cosmic Reionization on Computers\textit{Cosmic Reionization on Computers} simulation, and find a good agreement between 1.51.5 to 33pMpc from the quasar. This region is far away from the quasar hosts and hence approaching the mean density of the universe, which allows us to use the CDF to set constraints on the cosmological parameter σ8=0.6±0.3\sigma_8=0.6\pm0.3. The uncertainty is mainly due to the limited number of high-quality quasar sightlines currently available. Utilizing the more than >200>200 known quasars at z6z\gtrsim 6, this method will allow us in the future to tighten the constraint on σ8\sigma_8 to the percent level. In the region closer to the quasar within 1.51.5 pMpc, we find the density is higher than predicted in the simulation by 1.23±0.171.23 \pm 0.17, suggesting the typical host dark matter halo mass of a bright quasar (M1450<26.5M_{\rm 1450}<-26.5) at z6z\sim 6 is log10(M/M)=12.50.7+0.4\log_{\rm 10} (M/M_\odot)=12.5^{+0.4}_{-0.7}.

Keywords

Cite

@article{arxiv.2110.13917,
  title  = {Measuring the Density Fields around Bright Quasars at $z\sim 6$ with XQR-30 Spectra},
  author = {Huanqing Chen and Anna-Christina Eilers and Sarah E. I. Bosman and Nickolay Y. Gnedin and Xiaohui Fan and Feige Wang and Jinyi Yang and Valentina D'Odorico and George D. Becker and Manuela Bischetti and Chiara Mazzucchelli and Andrei Mesinger and Andrea Pallottini},
  journal= {arXiv preprint arXiv:2110.13917},
  year   = {2022}
}

Comments

16 pages, 11 figures, submitted to ApJ, comments are welcome