Optically-faint massive Balmer Break Galaxies at z>3 in the CANDELS/GOODS fields
Abstract
We present a sample of 33 Balmer Break Galaxies (BBGs) selected as HST/F160W dropouts in the deepest CANDELS/GOODS fields (~mag) but relatively bright in {\it Spitzer}/IRAC (~mag), implying red colors (median and quartiles: \,mag). Half of these BBGs are newly identified sources. Our BBGs are massive () high redshift () dusty (~mag) galaxies. The SEDs of half of our sample indicate that they are star-forming galaxies with typical specific SFRs 0.5-1.0~Gyr, qualifying them as main sequence (MS) galaxies at . One third of those SEDs indicates the presence of prominent emission lines (H+, H[NII]) boosting the IRAC fluxes and red colors. Approximately 20\% of the BBGs are very dusty (~mag) starbursts with strong mid-to-far infrared detections and extreme SFRs () that place them above the MS. The rest, 30\%, are post-starbursts or quiescent galaxies located below the MS with mass-weighted ages older than 700~Myr. Only 2 of the 33 galaxies are X-ray detected AGN with optical/near-infrared SEDs dominated by stellar emission, but the presence of obscured AGN in the rest of sources cannot be discarded. Our sample accounts for 8\% of the total number density of galaxies at , but it is a significant contributor (30\%) to the general population of red galaxies at . Finally, our results point out that 1 of every 30 massive galaxies in the local Universe was assembled in the first 1.5~Gyr after the Big Bang, a fraction that is not reproduced by state-of-the-art galaxy formation simulations.
Keywords
Cite
@article{arxiv.1806.04152,
title = {Optically-faint massive Balmer Break Galaxies at z>3 in the CANDELS/GOODS fields},
author = {Belén Alcalde Pampliega and Pablo G. Pérez-González and Guillermo Barro and Helena Domínguez Sánchez and M. Carmen Eliche-Moral and Nicolás Cardiel and Antonio Hernán-Caballero and Lucía Rodriguez-Muñoz and Patricia Sánchez Blázquez and Pilar Esquej},
journal= {arXiv preprint arXiv:1806.04152},
year = {2019}
}
Comments
38 pages, 18 figures, Accepted for publication in The Astrophysical Journal 26/03/2019