paper

Downsizing of Star Formation Measured from the Clustered Infrared Background Correlated with Quasars

arXiv:1804.08632 · doi:10.1093/mnras/sty1843

Abstract

Powerful quasars can be seen out to large distances. As they reside in massive dark matter haloes, they provide a useful tracer of large scale structure. We stack Herschel-SPIRE images at 250, 350 and 500 microns at the location of 11,235 quasars in ten redshift bins spanning . The unresolved dust emission of the quasar and its host galaxy dominate on instrumental beam scales, while extended emission is spatially resolved on physical scales of order a megaparsec. This emission is due to dusty star-forming galaxies clustered around the dark matter haloes hosting quasars. We measure radial surface brightness profiles of the stacked images to compute the angular correlation function of dusty star-forming galaxies correlated with quasars. We then model the profiles to determine large scale clustering properties of quasars and dusty star-forming galaxies as a function of redshift. We adopt a halo model and parameterize it by the most effective halo mass at hosting star-forming galaxies, finding at , and, at , the mass is . Our results indicate a downsizing of dark matter haloes hosting dusty star-forming galaxies between . The derived dark matter halo masses are consistent with other measurements of star-forming and sub-millimeter galaxies. The physical properties of dusty star-forming galaxies inferred from the halo model depend on details of the quasar halo occupation distribution in ways that we explore at , where the quasar HOD parameters are not well constrained.

Accepted for publication in MNRAS, 35 pages, 30 figures, 2 tables

Downsizing of Star Formation Measured from the Clustered Infrared Background Correlated with Quasars · wovepaper