English

The Star Formation Burstiness and Ionizing Efficiency of Low-mass Galaxies

Astrophysics of Galaxies 2022-02-23 v1

Abstract

We investigate the burstiness of star formation and the ionizing efficiency of a large sample of galaxies at 0.7<z<1.50.7 < z < 1.5 using HST grism spectroscopy and deep ultraviolet (UV) imaging in the GOODS-N and GOODS-S fields. The star formation history (SFH) in these strong emission line low-mass galaxies indicates an elevated star formation rate (SFR) based on the Hα\alpha emission line at a given stellar mass when compared to the standard main sequence. Moreover, when comparing the Hα\alpha and UV SFR indicators, we find that an excess in SFR(Hα\alpha) compared to SFR(UV) is preferentially observed in lower-mass galaxies below 10910^{9} M\odot, which are also the highest-EW galaxies. These findings suggest that the burstiness parameters of these strong emission line galaxies may differ from those inferred from hydrodynamical simulations and previous observations. For instance, a larger burstiness duty cycle would explain the observed SFR(Hα\alpha) excess. We also estimate the ionizing photon production efficiency ξion\xi_{ion}, finding a median value of Log(ξion\xi_{ion}/erg1^{-1} Hz)=24.80±0.26=24.80 \pm 0.26 when adopting a Galactic dust correction for Hα\alpha and an SMC one for the stellar component. We observe an increase of ξion\xi_{ion} with redshift, further confirming similar results at higher redshifts. We also find that ξion\xi_{ion} is strongly correlated with EW(Hα\alpha), which provides an approach for deriving ξion\xi_{ion} in early galaxies. Lower-mass, lower-luminosity galaxies have a higher ξion\xi_{ion}. Overall, these results provide further support for faint galaxies playing a major role in the reionization of the Universe.

Keywords

Cite

@article{arxiv.2202.04081,
  title  = {The Star Formation Burstiness and Ionizing Efficiency of Low-mass Galaxies},
  author = {Hakim Atek and Lukas Furtak and Pascal Oesch and Pieter van Dokkum and Naveen Reddy and Thierry Contini and Garth Illingworth and Stephen Wilkins},
  journal= {arXiv preprint arXiv:2202.04081},
  year   = {2022}
}

Comments

17 pages. Accepted for publication in MNRAS