Nature of the DLA towards Q0528-250: High pressure and strong UV field revealed by excitation of CI, H2 and SiII
arXiv:2007.07707 · doi:10.1093/mnras/staa2108
Abstract
We present the detection of excited fine-structure energy levels of singly-ionized silicon and neutral carbon associated with the proximate damped Lyman- system at towards \qso. This absorber has an apparent relative velocity that is inconsistent with the Hubble flow indicating motion along the line-of-sight towards the quasar, i.e., . We measure the metallicity of the system to be . Using the relative populations of the fine-structure levels of SiII and CI, as well as the populations of H rotational levels, we constrain the physical conditions of the gas. We derive hydrogen number densities of cm and cm in two velocity components where both CI and H are detected. Taking into account the kinetic temperature in each component, K, we infer high values of thermal pressure in the cold neutral medium probed by the observations. The strengths of the UV field in Draine's unit are and in each of these two components, respectively. Such enhanced UV fluxes and thermal pressure compared to intervening DLAs are likely due to the proximity of the quasar. The typical size of the absorber is a.u. Assuming the UV flux is dominated by the quasar, we constrain the distance between the quasar and the absorber to be kpc. This favours a scenario where the absorption occurs in a companion galaxy located in the group where the quasar-host galaxy resides. This is in line with studies in emission that revealed the presence of several galaxies around the quasar.
11 pages, 5 figures, accepted for publication in MNRAS
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- On the Dusty Proximate Damped Lyman-α System toward Q2310-3358 at z = 2.40
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