The MUSE eXtremely Deep Field: Individual detections of Ly{\alpha} haloes around rest-frame UV-selected galaxies at z~2.9-4.4
Haruka Kusakabe, Anne Verhamme, Jeremy Blaizot, Thibault Garel, Lutz, Wisotzki, Floriane Leclercq, Roland Bacon, Joop Schaye, Sofia G. Gallego,, Josephine Kerutt, Jorryt Matthee, Michael Maseda, Themiya Nanayakkara, Roser, Pello, Johan Richard, Laurence Tresse, Tanya Urrutia

TL;DR
This study detects and characterizes Lyα haloes around UV-selected galaxies at redshifts 2.9-4.4, revealing that most such galaxies have extended hydrogen gas in their circumgalactic medium, similar to Lyα emitters.
Contribution
First individual detections of extended Lyα emission around UV-selected non-LAEs at high redshift, showing a high halo fraction comparable to LAEs, and providing detailed surface brightness profiles.
Findings
81% of UV-selected galaxies have Lyα haloes.
Lyα emission extends up to ~40 kpc from galaxies.
Lyα haloes trace the same gas as Damped Lyα systems.
Abstract
Hydrogen Ly haloes (LAHs) are commonly used as a tracer of the circumgalactic medium (CGM) at high redshifts. In this work, we aim to explore the existence of Ly haloes around individual UV-selected galaxies, rather than around Ly emitters (LAEs), at high redshifts. Our sample was continuum-selected with F775W<=27.5, and spectroscopic redshifts were assigned or constrained for all the sources thanks to the deepest (100- to 140-hour) existing Very Large Telescope (VLT)/Multi-Unit Spectroscopic Explorer (MUSE) data with adaptive optics. The final sample includes 21 galaxies that are purely F775W-magnitude selected within the redshift range z=2.9-4.4 and within a UV magnitude range -20<=M1500<= -18, thus avoiding any bias toward LAEs. We tested whether galaxy's Ly emission is significantly more extended than the MUSE PSF-convolved continuum…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Astrophysics and Cosmic Phenomena
