The VLT SINFONI Mg ii Program for Line Emitters (SIMPLE) II: background quasars probing z $\sim$ 1 galactic winds
Ilane Schroetter (1), Nicolas Bouch\'e (1), C\'eline P\'eroux (2),, Michael T. Murphy (3), Thierry Contini (1), Hayley Finley (1) ((1) IRAP,, Toulouse, (2) LAM, Marseille, (3) Swinburne)

TL;DR
This study investigates galactic winds at z~1 by analyzing quasar-galaxy pairs, revealing outflow speeds around 100 km/s, mass loading factors near unity, and that these winds are generally bound to the galaxy halos.
Contribution
It provides detailed kinematic analysis of galactic winds using background quasars, demonstrating geometrical wind models and quantifying outflow properties at z~1.
Findings
Outflow speeds are approximately 100 km/s.
Mass ejection rates are comparable to star formation rates.
Outflows are generally bound and do not escape galaxy halos.
Abstract
The physical properties of galactic winds are of paramount importance for our understanding of galaxy formation. Fortunately, they can be constrained using background quasars passing near star-forming galaxies (SFGs). From the 14 quasargalaxy pairs in our VLT/SINFONI Mgii Program for Line Emitters (SIMPLE) sample, we reobserved the 10 brightest galaxies in H with the VLT/SINFONI with 0.7" seeing and the corresponding quasar with the VLT/UVES spectrograph. Applying geometrical arguments to these ten pairs, we find that four are likely probing galactic outflows, three are likely probing extended gaseous disks, and the remaining three are not classifiable because they are viewed face-on. In this paper we present a detailed comparison between the line-of-sight kinematics and the host galaxy emission kinematics for the pairs suitable for wind studies. We find that the kinematic…
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