The Column Density Distribution and Continuum Opacity of the Intergalactic and Circumgalactic Medium at Redshift <z>=2.4
Gwen C. Rudie, Charles C. Steidel, Alice E. Shapley, Max Pettini

TL;DR
This study provides precise measurements of the intergalactic and circumgalactic medium's opacity at redshift 2.4, revealing higher opacity and a broken power law distribution of hydrogen absorbers, impacting estimates of the universe's ionizing photon mean free path.
Contribution
First robust measurement of HI absorber frequency distribution in IGM and CGM at z=2.4, including the first analysis of the CGM's higher absorber incidence and its effect on photon mean free path.
Findings
Higher opacity of IGM and CGM than previous studies.
The frequency distribution of absorbers follows a broken power law.
Reduced mean free path of ionizing photons when accounting for CGM opacity.
Abstract
We present new high-precision measurements of the opacity of the intergalactic and circumgalactic medium (IGM, CGM) at <z>=2.4. Using Voigt profile fits to the full Lyman alpha and Lyman beta forests in 15 high-resolution high-S/N spectra of hyperluminous QSOs, we make the first statistically robust measurement of the frequency of absorbers with HI column densities 14 < log(NHI) < 17.2. We also present the first measurements of the frequency distribution of HI absorbers in the volume surrounding high-z galaxies (the CGM, 300 pkpc), finding that the incidence of absorbers in the CGM is much higher than in the IGM. In agreement with Rudie et al. (2012), we find that there are fractionally more high-NHI absorbers than low-NHI absorbers in the CGM compared to the IGM, leading to a shallower power law fit to the CGM frequency distribution. We use these new measurements to calculate the total…
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