Galaxy counterparts of metal-rich damped Lyman-alpha absorbers - II. A solar-metallicity and dusty DLA at z_abs=2.58
J. P. U. Fynbo, C. Ledoux, P. Noterdaeme, L. Christensen, P. Moller,, A. K. Durgapal, P. Goldoni, L. Kaper, J.-K. Krogager, P. Laursen, J. R., Maund, B. Milvang-Jensen, K. Okoshi, P. K. Rasmussen, T. J. Thorsen, S. Toft,, T. Zafar

TL;DR
This study reports the discovery of a highly metal-rich, dusty galaxy counterpart to a DLA at z=2.58, detected via emission lines and molecular hydrogen, highlighting dust's role in obscuring such systems.
Contribution
First detection of H_2 molecules in a metal-rich DLA at high redshift, revealing widespread dust and its impact on DLA observability.
Findings
Galaxy counterpart detected in OIII and OII emission lines
DLA is among the most metal-rich at similar redshifts
H_2 molecules detected in the DLA
Abstract
[Abridged]. Here, we report on the discovery of the galaxy counterpart of the z_abs=2.58 DLA on the line-of-sight to the z=3.07 quasar SDSS J091826.16+163609.0. The galaxy counterpart of the DLA is detected in the OIII 5007 and OII 3726,3729 emission lines redshifted into the NIR at an impact parameter of 16 kpc. Ly-alpha emission is not detected. The upper limit implies that Ly-alpha emission from this galaxy is suppressed by more than an order of magnitude. The DLA is amongst the most metal-rich DLAs studied so far at comparable redshifts. We find evidence for substantial depletion of refractory elements onto dust grains. Fitting the main metal line component of the DLA, which is located at z_abs=2.5832 and accounts for at least 85% of the total column density of low-ionisation species, we measure metal abundances from ZnII, SII, SiII, CrII, MnII, FeII and NiII of -0.12, -0.26, -0.46,…
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