A Strong Blend in the Morning: Studying the Circumgalactic Medium Before Cosmic Noon with Strong, Blended Lyman- Forest Systems
arXiv:2309.06813
Abstract
We study of the properties of a new class of circumgalactic medium absorbers identified in the Lyman- forest: "Strong, Blended Lyman-" (or SBLA) absorption systems. We study SBLAs at in SDSS-IV/eBOSS spectra by their strong extended Lyman- absorption complexes covering 138 with an integrated cm and Doppler parameter . Clustering with the Lyman- forest provides a large-scale structure bias of and halo mass estimate of for our SBLA sample. We measure the ensemble mean column densities of 22 metal features in the SBLA composite spectrum and find that no single-population multiphase model for them is viable. We therefore explore the underlying SBLA population by forward modelling the SBLA absorption distribution. Based on covariance measurements and favoured populations we find that \% of our SBLAs have stronger metals. Using silicon only we find that our strong metal SBLAs trace gas with a cm for K and show gas clumping on parsec scales. We fit multiphase models to this strong sub-population and find a low ionization phase with cm, K and , an intermediate ionization phase with cm, K and , and a poorly constrained higher ionization phase. We find that the low ionization phase favours cold, dense super-solar metallicity gas with a clumping scale of just 0.009 parsecs.
28 pages, accepted for publication in MNRAS. Updated version of CLOUDY and UV background model. Many small changes to results with no impact on overall conclusions