EIGER II. first spectroscopic characterisation of the young stars and ionised gas associated with strong H and [OIII] line-emission in galaxies at z=5-7 with JWST
arXiv:2211.08255 · doi:10.3847/1538-4357/acc846
Abstract
We present emission-line measurements and physical interpretations for a sample of 117 [OIII] emitting galaxies at , using the first deep JWST/NIRCam wide field slitless spectroscopic observations. Our 9.7-hour integration is centered upon the quasar J0100+2802 -- the first of six fields targeted by the EIGER survey -- and covers microns. We detect 133 [OIII] doublets, but merge pairs within 10 kpc and 600 km s, motivated by their small scale clustering excess. We detect H in 68 and H emission in two galaxies. The galaxies are characterised by a UV luminosity M ( to ), stellar mass ~ M, H and [OIII] EWs 850 Angstrom (up to 3000 Angstrom), young ages (~100 Myr), a highly excited interstellar medium ([OIII]/H) and low dust attenuations. These high EWs are very rare in the local Universe, but we show they are ubiquitous at based on the measured number densities. The stacked spectrum reveals H and [OIII] which shows that the galaxies are typically dust and metal poor (E(B-V)=0.1, 12+log(O/H)=7.4) with a high electron temperature ( K) and a production efficiency of ionising photons ( Hz erg). We further show the existence of a strong mass-metallicity relation. The young highly ionising stellar populations, moderately low metallicities, low dust attenuations and high ionisation state in z~6 galaxies conspire to maximise the [OIII] output from galaxies, yielding an [OIII] luminosity density at z~6 that is significantly higher than at z~2, despite the order of magnitude decline in cosmic star formation. Thus, [OIII] emission-line surveys with JWST prove a highly efficient method to trace the galaxy density in the epoch of reionization.
Accepted for publication in ApJ. Main text 22 pages, 20 figures. Main results in Figs 14 (Xi_ion), 15 (MEx diagram),17 (MZR), 19 ([OIII] luminosity density)
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