JWST/NIRSpec Balmer-line Measurements of Star Formation and Dust Attenuation at z~3-6
arXiv:2301.03241
Abstract
We present an analysis of the star-formation rates (SFRs) and dust attenuation properties of star-forming galaxies at drawn from the Cosmic Evolution Early Release Science (CEERS) Survey. Our analysis is based on {\it JWST}/NIRSpec Micro-Shutter Assembly (MSA) spectroscopic observations covering approximately m. Our primary rest-frame optical spectroscopic measurements are H/H Balmer decrements, which we use as an indicator of nebular dust attenuation. In turn, we use Balmer decrements to obtain dust-corrected H-based SFRs (i.e., SFR(H)). We construct the relationship between SFR(H) and stellar mass () in three bins of redshift (, , and ), which represents the first time the star-forming main sequence has been traced at these redshifts using direct spectroscopic measurements of Balmer emission as a proxy for SFR. In tracing the relationship between SFR(H) and back to such early times (), it is essential to use a conversion factor between H and SFR that accounts for the subsolar metallicity prevalent among distant galaxies. We also use measured Balmer decrements to investigate the relationship between dust attenuation and stellar mass out to . The lack of significant redshift evolution in attenuation at fixed stellar mass, previously confirmed using Balmer decrements out to , appears to hold out to . Given the rapidly evolving gas, dust, and metal content of star-forming galaxies at fixed mass, this lack of significant evolution in attenuation provides an ongoing challenge to explain.
9 pages, 4 figures, ApJ, in press