Dissecting the Gaseous Halos of z~2 Damped Ly$\alpha$ Systems with Close Quasar Pairs
Kate H. R. Rubin, Joseph F. Hennawi, J. Xavier Prochaska, Robert A., Simcoe, Adam Myers, Marie Wingyee Lau

TL;DR
This study uses quasar pairs to analyze the gaseous halos around z~2 Damped Lyα systems, revealing the extent, composition, and kinematics of circumgalactic gas and its relation to galaxy properties.
Contribution
It provides new insights into the structure and composition of the circumgalactic medium around DLAs at z~2 using close quasar pairs, highlighting the prevalence of high-ionization gas and its large-scale coherence.
Findings
High covering fraction (>30%) of optically thick HI within 200 kpc of DLAs.
Widespread CIV absorption indicating large, quiescent structures beyond DLA halos.
Weak dependence of cool CGM absorption strength on dark matter halo mass.
Abstract
We use spectroscopy of close pairs of quasars to study diffuse gas in the circumgalactic medium (CGM) surrounding a sample of 40 Damped Lya systems (DLAs). The primary sightline in each quasar pair probes an intervening DLA in the redshift range 1.6 < z_DLA < 3.6, such that the second quasar sightline then probes Lya, CII, SiII, and CIV absorption in the CGM transverse to the DLA to projected distances kpc. Analysis of the Lya profiles in these CGM sightlines constrains the covering fraction (f_C) of optically thick HI (having column density N_HI > 10^17.2 cm^-2) to be greater than ~30% within kpc of DLAs. Strong SiII 1526 absorption with equivalent width W_1526 > 0.2 Ang occurs with an incidence f_C (W_1526 > 0.2 Ang) = 20(+12/-8)% within kpc, indicating that low-ionization metal absorption associated with DLAs probes material at a…
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