EPOCHS. II. The Ultraviolet Luminosity Function from 7.5 < z < 13.5 Using 180 arcmin2 of Deep, Blank Fields from the PEARLS Survey and Public JWST Data

Author:

Adams Nathan J.ORCID,Conselice Christopher J.ORCID,Austin DuncanORCID,Harvey ThomasORCID,Ferreira LeonardoORCID,Trussler JamesORCID,Juodžbalis IgnasORCID,Li QiongORCID,Windhorst RogierORCID,Cohen Seth H.ORCID,Jansen Rolf A.ORCID,Summers JakeORCID,Tompkins ScottORCID,Driver Simon P.ORCID,Robotham AaronORCID,D’Silva Jordan C. J.,Yan HaojingORCID,Coe DanORCID,Frye BrendaORCID,Grogin Norman A.ORCID,Koekemoer Anton M.ORCID,Marshall Madeline A.ORCID,Pirzkal NorORCID,Ryan Russell E.ORCID,Maksym W. PeterORCID,Rutkowski Michael J.ORCID,Willmer Christopher N. A.ORCID,Hammel Heidi B.,Nonino MarioORCID,Bhatawdekar RachanaORCID,Wilkins Stephen M.ORCID,Bradley Larry D.ORCID,Broadhurst TomORCID,Cheng ChengORCID,Dole HervéORCID,Hathi Nimish P.ORCID,Zitrin AdiORCID

Abstract

Abstract We present an analysis of the ultraviolet luminosity function (UV LF) and star formation rate density of distant galaxies (7.5 < z < 13.5) in the “blank” fields of the Prime Extragalactic Areas for Reionization and Lensing Science (PEARLS) survey combined with Early Release Science data from the CEERS, GLASS, and NGDEEP surveys/fields and the first data release of JADES. We use strict quality cuts on EAZY photometric redshifts to obtain a reliable selection and characterization of high-redshift (z > 6.5) galaxies from a consistently processed set of deep, near-infrared imaging. Within an area of 180 arcmin2, we identify 1046 candidate galaxies at redshifts z > 6.5 and we use this sample to study the UV LF in four redshift bins between 7.5 < z < 13.5. The measured number density of galaxies at z = 8 and z = 9 matches those of past observations undertaken by the Hubble Space Telescope (HST). Our z = 10.5 measurements lie between early James Webb Space Telescope (JWST) results and past HST results, indicating cosmic variance may be the cause of previous high density measurements. However, the number densities of UV-luminous galaxies at z = 12.5 are high compared to predictions from simulations. When examining the star formation rate density of galaxies at this period, our observations are still largely consistent with a constant star formation efficiency, are slightly lower than previous early estimations using JWST, and support galaxy driven reionization at z ≤ 8.

Funder

EC ∣ European Research Council

Publisher

American Astronomical Society

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