The MUSE Extremely Deep Field: the Cosmic Web in Emission at High Redshift
Abstract
We report the discovery of diffuse extended Ly-alpha emission from redshift 3.1 to 4.5, tracing cosmic web filaments on scales of 2.5-4 comoving Mpc. These structures have been observed in overdensities of Ly-alpha emitters in the MUSE Extremely Deep Field, a 140 hour deep MUSE observation located in the Hubble Ultra Deep Field. Among the 22 overdense regions identified, 5 are likely to harbor very extended Ly-alpha emission at high significance with an average surface brightness of . Remarkably, 70% of the total Ly-alpha luminosity from these filaments comes from beyond the circumgalactic medium of any identified Ly-alpha emitters. Fluorescent Ly-alpha emission powered by the cosmic UV background can only account for less than 34% of this emission at z3 and for not more than 10% at higher redshift. We find that the bulk of this diffuse emission can be reproduced by the unresolved Ly-alpha emission of a large population of ultra low luminosity Ly-alpha emitters (), provided that the faint end of the Ly-alpha luminosity function is steep (), it extends down to luminosities lower than and the clustering of these Ly-alpha emitters is significant (filling factor ). If these Ly-alpha emitters are powered by star formation, then this implies their luminosity function needs to extend down to star formation rates . These observations provide the first detection of the cosmic web in Ly-alpha emission in typical filamentary environments and the first observational clue for the existence of a large population of ultra low luminosity Ly-alpha emitters at high redshift.
Keywords
Cite
@article{arxiv.2102.05516,
title = {The MUSE Extremely Deep Field: the Cosmic Web in Emission at High Redshift},
author = {Roland Bacon and David Mary and Thibault Garel and Jeremy Blaizot and Michael Maseda and Joop Schaye and Lutz Wisotzki and Simon Conseil and Jarle Brinchmann and Floriane Leclercq and Valentina Abril-Melgarejo and Leindert Boogaard and Nicolas Bouché and Thierry Contini and Anna Feltre and Bruno Guiderdoni and Christian Herenz and Wolfram Kollatschny and Haruka Kusakabe and Jorryt Matthee and Léo Michel-Dansac and Themiya Nanayakkara and Johan Richard and Martin Roth and Kasper B. Schmidt and Matthias Steinmetz and Laurence Tresse and Tanya Urrutia and Anne Verhamme and Peter M. Weilbacher and Johannes Zabl and Sebastiaan L. Zoutendijk},
journal= {arXiv preprint arXiv:2102.05516},
year = {2021}
}
Comments
28 pages, 19 figures