paper

Characterizing the contribution of dust-obscured star formation at 5 using 18 serendipitously identified [CII] emitters

arXiv:2409.11463

Abstract

We present a new method to determine the star formation rate (SFR) density of the Universe at that includes the contribution of dust-obscured star formation. For this purpose, we use a [CII] (158 m) selected sample of galaxies serendipitously identified in the fields of known objects to characterize the fraction of obscured SFR. The advantage of a [CII] selection is that our sample is SFR-selected, in contrast to a UV-selection that would be biased towards unobscured star formation. We obtain a sample of 23 [CII] emitters near star-forming (SF) galaxies and QSOs -- three of which we identify for the first time -- using previous literature and archival ALMA data. 18 of these serendipitously identified galaxies have sufficiently deep rest-UV data and are used to characterize the obscured fraction of the star formation in galaxies with SFRs . We find that [CII] emitters identified around SF galaxies have 63\% of their SFR obscured, while [CII] emitters around QSOs have 93\% of their SFR obscured. By forward modeling existing wide-area UV luminosity function (LF) determinations, we derive the intrinsic UV LF using our characterization of the obscured SFR. Integrating the intrinsic LF to = 20 we find that the obscured SFRD contributes to and of the total SFRD at and based on our sample of companions galaxies near SFGs and QSOs, respectively. Our results suggest that dust obscuration is not negligible at , further underlining the importance of far-IR observations of the Universe.

Accepted for publication in MNRAS. 24 pages, 14 figures, 8 tables (including appendices)