GNHeII J1236+6215: A He II 1640 emitting and potentially LyC leaking galaxy at = 2.9803 unveiled through JWST & Keck observations
arXiv:2506.06831
Abstract
He II 1640 emission in galaxies indicates the presence of sources that produce extreme ionizing photons. Here, we report the discovery of a He II 1640 emitting galaxy, GNHeII J1236+6215, at 2.9803 in the GOODS-north field. We use photometry in 17 wavebands from near-UV to infrared to characterize the galaxy SED and combine Keck LRIS and JWST NIRSpec spectra to identify 15 emission lines including He II 1640. We infer that the He ionization in the galaxy could be driven by small pockets of young Population III stars or low-metallicity Very Massive Stars (VMSs) rather than AGN or metal-rich Wolf-Rayet stars. The galaxy has a highly ionized ISM ([OIII]5007/[OII]3727 = 7.280.11, [SIII]/[SII] = 1.970.48 and detected Ly, H, H, H lines), little reddening by dust (E(BV) = 0.040.12), low metallicity (12 + log(O/H) = 7.850.22), and high star formation rate (SFR = 12.22.0 M yr). In addition to these ISM conditions, we also notice a significant [SII] deficiency ([SII]6718,6732/H = 0.080.02, [SII] = 0.12) which may indicate the presence of density-bounded optically thin H~II regions that combined with the low dust extinction favor leaking of ionizing Lyman continuum (LyC) photons. Our best-fit SED model also infers a high nebular ionization (log U = ) and a low stellar mass M = 7.810M. This discovery not only adds one important object to the known sample of high-redshift He~II emitters but also highlights a potential connection between He ionization and favorable ISM conditions for the leakage of ionizing photons from galaxies.
Accepted for publication in ApJ