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The MUSE Ultra Deep Field (MUDF). II. Survey design and the gaseous properties of galaxy groups at 0.5 < z < 1.5.

Authors :
Fossati, M
Fumagalli, M
Lofthouse, E K
D'Odorico, V
Lusso, E
Cantalupo, S
Cooke, R J
Cristiani, S
Haardt, F
Morris, S L
Peroux, C
Prichard, L J
Rafelski, M
Smail, I
Theuns, T
Source :
Monthly Notices of the Royal Astronomical Society; Nov2019, Vol. 490 Issue 1, p1451-1469, 19p
Publication Year :
2019

Abstract

We present the goals, design, and first results of the MUSE Ultra Deep Field (MUDF) survey, a large programme using the Multi Unit Spectroscopic Explorer (MUSE) instrument at the ESO Very Large Telescope. The MUDF survey is collecting ≈150 h on-source of integral field optical spectroscopy in a 1.5&#160;&#215;&#160;1.2 arcmin&lt;superscript&gt;2&lt;/superscript&gt; region which hosts several astrophysical structures along the line of sight, including two bright z ≈ 3.2 quasars with close separation (≈500 kpc). Following the description of the data reduction procedures, we present the analysis of the galaxy environment and gaseous properties of seven groups detected at redshifts 0.5 &lt; z &lt; 1.5, spanning a large dynamic range in halo mass, |$\log (M_h/\rm {M_\odot }) \approx 11 - 13.5$|⁠. For four of the groups, we find associated Mg  ii absorbers tracing cool gas in high-resolution spectroscopy of the two quasars, including one case of correlated absorption in both sightlines at distance ≈480 kpc. The absorption strength associated with the groups is higher than what has been reported for more isolated galaxies of comparable mass and impact parameters. We do not find evidence for widespread cool gas giving rise to strong absorption within these groups. Combining these results with the distribution of neutral and ionized gas seen in emission in lower redshift groups, we conclude that gravitational interactions in the group environment strip gas from the galaxy haloes into the intragroup medium, boosting the cross-section of cool gas and leading to the high fraction of strong Mg  ii absorbers that we detect. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00358711
Volume :
490
Issue :
1
Database :
Complementary Index
Journal :
Monthly Notices of the Royal Astronomical Society
Publication Type :
Academic Journal
Accession number :
139321177
Full Text :
https://doi.org/10.1093/mnras/stz2693