paper

Early results from GLASS-JWST. VI: Extreme rest-optical equivalent widths detected in NIRISS Wide Field Slitless Spectroscopy

arXiv:2207.13459 · doi:10.3847/2041-8213/ac9f17

Abstract

Wide Field Slitless Spectroscopy (WFSS) provides a powerful tool for detecting strong line emission in star forming galaxies (SFGs) without the need for target pre-selection. As part of the GLASS-JWST-ERS program, we leverage the near-infrared wavelength capabilities of NIRISS (m) to observe rest-optical emission lines out to , to a depth and with a spatial resolution higher than ever before (H to z<2.4; [OIII]+H to z<3.4). In this letter we constrain the rest-frame [OIII] equivalent width (EW) distribution for a sample of 76 SFGs in the Abell 2744 Hubble Frontier Field and determine an abundance fraction of extreme emission line galaxies with EWA in our sample to be . We determine a strong correlation between the measured H and [OIII] EWs, supporting that the high [OIII] EW objects require massive stars in young stellar populations to generate the high energy photons needed to doubly ionise oxygen. We extracted spectra for objects up to 2 mag fainter in the near-infrared than previous WFSS studies with the Hubble Space Telescope. Thus, this work clearly highlights the potential of JWST/NIRISS to provide high quality WFSS datasets in crowded cluster environments.

9 pages, 3 figures, submitted to APJL