Evolution of H Equivalent Widths from : implications for star formation and legacy surveys with Roman and Euclid
arXiv:2408.00080
Abstract
We investigate the `intrinsic' H EW distributions of narrowband-selected H samples from HiZELS and DAWN using a forward modeling approach. We find an EW - stellar mass anti-correlation with steepening slopes to at and , respectively. Typical EW increases as for a M emitter from à () to à () and is steeper with decreasing stellar mass highlighting the high EW nature of low-mass high- systems. We model this redshift evolving anti-correlation, , and find it produces H luminosity and SFR functions strongly consistent with observations validating the model and allowing us to use to investigate the relative contribution of H emitters towards cosmic SF. We find EW à emitters contribute significantly to cosmic SF activity at making up % of total SF consistent with sSFR yr (%). Overall, this highlights the importance of high EW systems at high-. Our model also reproduces the cosmic sSFR evolution found in simulations and observations and show that tension between the two can simply arise from selection effects in observations. Lastly, we forecast Roman and Euclid grism surveys using including observational efficiency and limiting resolution effects where we predict and H emitters per deg, respectively, down to erg s cm including M galaxies at with EWà . Both Roman and Euclid will enable us to observe with unprecedented detail some of the most bursty/high EW, low-mass star-forming galaxies near cosmic noon.
25 pages, 12 Figures, and 12 Tables. Submitted to MNRAS. Comments are welcomed. (Abridged Abstract)