The strong observed clustering of z>3.5 quasars indicates they are hosted by massive (Mhalo≳1012h−1M⊙) dark matter halos. Assuming quasars and galaxies trace the same large-scale structures, this should also manifest as strong clustering of galaxies around quasars. Previous work on high-redshift quasar environments, mostly focused at z>5, have failed to find convincing evidence for these overdensities. Here we conduct a survey for Lyman alpha emitters (LAEs) in the environs of 17 quasars at z∼4 probing scales of R≲7h−1Mpc. We measure an average LAE overdensity around quasars of 1.4 for our full sample, which we quantify by fitting the quasar-LAE cross-correlation function. We find consistency with a power-law shape with correlation length of r0QG=2.78−1.05+1.16h−1cMpc for a fixed slope of γ=1.8. We also measure the LAE auto-correlation length and find r0GG=9.12−1.31+1.32h−1\,cMpc (γ=1.8), which is 3.3 times higher than the value measured in blank fields. Taken together our results clearly indicate that LAEs are significantly clustered around z∼4 quasars. We compare the observed clustering with the expectation from a deterministic bias model, whereby LAEs and quasars probe the same underlying dark matter overdensities, and find that our measurements fall short of the predicted overdensities by a factor of 2.1. We discuss possible explanations for this discrepancy including large-scale quenching or the presence of excess dust in galaxies near quasars. Finally, the large cosmic variance from field-to-field observed in our sample (10/17 fields are actually underdense) cautions one from over-interpreting studies of z∼6 quasar environments based on a single or handful of quasar fields.
@article{arxiv.1904.05894,
title = {Clustering of Lyman-alpha Emitters Around Quasars at $z\sim4$},
author = {Cristina Garcia-Vergara and Joseph F. Hennawi and L. Felipe Barrientos and Fabrizio Arrigoni Battaia},
journal= {arXiv preprint arXiv:1904.05894},
year = {2019}
}