MUSE Analysis of Gas around Galaxies (MAGG) – IV. The gaseous environment of z ∼ 3–4 Ly α emitting galaxies

Author:

Lofthouse Emma K12ORCID,Fumagalli Michele13ORCID,Fossati Matteo12ORCID,Dutta Rajeshwari12ORCID,Galbiati Marta1,Arrigoni Battaia Fabrizio4ORCID,Cantalupo Sebastiano1ORCID,Christensen Lise5ORCID,Cooke Ryan J6ORCID,Longobardi Alessia12ORCID,Murphy Michael T7ORCID,Prochaska J Xavier89

Affiliation:

1. Dipartimento di Fisica ‘G. Occhialini’, Università degli Studi di Milano Bicocca , Piazza della Scienza 3, I-20126 Milano, Italy

2. INAF – Osservatorio Astronomico di Brera , via Brera 28, I-20121 Milano, Italy

3. INAF – Osservatorio Astronomico di Trieste , via G. B. Tiepolo 11, I-34143 Trieste, Italy

4. Max-Planck-Institut für Astrophysik , Karl-Schwarzschild-Str 1, D-85748 Garching bei München, Germany

5. Cosmic Dawn Center (DAWN), Niels Bohr Institute, University of Copenhagen , Jagtvej 128, DK-2200 N Copenhagen, Denmark

6. Centre for Extragalactic Astronomy, Durham University , South Road, Durham DH1 3LE, UK

7. Centre for Astrophysics and Supercomputing, Swinburne University of Technology , Hawthorn, Victoria 3122, Australia

8. Department of Astronomy and Astrophysics, University of California , Santa Cruz, CA 95064, USA

9. Kavli Institute for the Physics and Mathematics of the Universe , 5-1-5 Kashiwanoha, Kashiwa 277-8583, Japan

Abstract

ABSTRACT We study the link between galaxies and H i-selected absorption systems at z ∼ 3–4 in the MUSE Analysis of Gas around Galaxies (MAGG) survey, an ESO large programme consisting of integral field spectroscopic observations of 28 quasar fields hosting 61 strong absorbers with $\rm N_{\rm H\,{\small I}}\gtrsim 10^{16.5}~\rm cm^{-2}$. We identify 127 Ly α emitting galaxies (LAEs) around the absorbers, corresponding to a detection rate of 82 ± 16 per cent. The luminosity function of these LAEs is ≈5 times higher in normalization than the field population and we detect a significant clustering of galaxies with respect to the gas, confirming that high column density absorbers and LAEs trace each other. Between 30 and 40 per cent of the absorbers are associated with multiple LAEs, which lie preferentially along filaments. Galaxies in groups also exhibit a three times higher covering factor of optically thick gas compared to isolated systems. No significant correlations are identified between the emission properties of LAEs and the absorption properties of optically thick gas clouds, except for a weak preference of brighter and multiple galaxies to reside near broad absorbers. Based on the measured impact parameters and the covering factor, we conclude that the near totality of optically thick gas in the Universe can be found in the outer circumgalactic medium (CGM) of LAEs or in the intergalactic medium (IGM) in proximity to these galaxies. Thus, LAEs act as tracers of larger scale structures within which both galaxies and optically thick clouds are embedded. The patchy and inhomogeneous nature of the CGM and IGM explains the lack of correlations between absorption and emission properties. This implies that very large samples are needed to unveil the trends that encode the properties of the baryon cycle.

Funder

European Research Council

Fondazione Cariplo

Royal Society

Science and Technology Facilities Council

Australian Research Council

ESO

Durham University

National Aeronautics and Space Administration

NED

Jet Propulsion Laboratory

California Institute of Technology

Alfred P. Sloan Foundation

U.S. Department of Energy Office of Science

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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