Nature of the Absorbing Gas associated with a Galaxy Group at z~0.4
Celine Peroux (1), Hadi Rahmani (1), Samuel Quiret (1), Max Pettini, (2), Varsha P. Kulkarni (3), Donald G. York (4), Lorrie Straka (5), Bernd, Husemann (6), Bruno Milliard (1) ((1) Laboratoire d'Astrophysique de, Marseille, France (2) Institute of Astronomy, Cambridge

TL;DR
This study uses MUSE observations to analyze a galaxy group at z~0.4, revealing multiple galaxies and complex gas dynamics associated with a sub-DLA, including co-rotation, possible accretion, and intra-group gas contributions.
Contribution
First detailed multi-galaxy analysis of a galaxy group at z~0.4 linking absorption features to galaxy properties and gas dynamics.
Findings
Multiple galaxies at the absorber redshift were identified, including star-forming and passive types.
The closest galaxy is a large rotating disk with high metallicity and mass.
Some absorbing gas is co-rotating or possibly accreting, not outflowing.
Abstract
We present new MUSE observations of quasar field Q2131-1207 with a log N(HI)=19.50+/-0.15 sub-DLA at z_abs=0.42980. We detect four galaxies at a redshift consistent with that of the absorber where only one was known before this study. Two of these are star forming galaxies, while the ones further away from the quasar (>140 kpc) are passive galaxies. We report the metallicities of the HII regions of the closest objects (12+log(O/H)=8.98+/-0.02 and 8.32+/-0.16) to be higher or equivalent within the errors to the metallicity measured in absorption in the neutral phase of the gas (8.15+/-0.20). For the closest object, a detailed morpho-kinematic analysis indicates that it is an inclined large rotating disk with V_max=200+/-3 km/s. We measure the masses to be M_dyn=7.4+/-0.4 x 10^10 M_sun and M_halo=2.9+/-0.2 x 10^12 M_sun. Some of the gas seen in absorption is likely to be co-rotating with…
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