Early Results from GLASS-JWST. XXIV. The Mass–Metallicity Relation in Lensed Field Galaxies at Cosmic Noon with NIRISS*

Author:

He XianlongORCID,Wang XinORCID,Jones TuckerORCID,Treu TommasoORCID,Glazebrook K.ORCID,Malkan Matthew A.ORCID,Vulcani BenedettaORCID,Metha BenjaminORCID,Bradač MarušaORCID,Brammer GabrielORCID,Roberts-Borsani GuidoORCID,Strait VictoriaORCID,Bonchi AndreaORCID,Castellano MarcoORCID,Fontana AdrianoORCID,Mason CharlotteORCID,Merlin EmilianoORCID,Morishita TakahiroORCID,Paris DiegoORCID,Santini PaolaORCID,Trenti MicheleORCID,Boyett KristanORCID,Grasha K.ORCID

Abstract

Abstract We present a measurement of the mass–metallicity relation (MZR) at Cosmic Noon, using the JWST near-infrared wide-field slitless spectroscopy obtained by the GLASS-JWST Early Release Science program. By combining the power of JWST and the lensing magnification by the foreground cluster A2744, we extend the measurements of the MZR to the dwarf mass regime at high redshifts. A sample of 50 galaxies with several emission lines is identified across two wide redshift ranges of z = 1.8–2.3 and 2.6–3.4 in the stellar mass range of log ( M * / M ) [ 6.9 , 10.0 ] . The observed slope of MZR is 0.223 ± 0.017 and 0.294 ± 0.010 at these two redshift ranges, respectively, consistent with the slopes measured in field galaxies with higher masses. In addition, we assess the impact of the morphological broadening on emission line measurement by comparing two methods of using 2D forward modeling and line profile fitting to 1D extracted spectra. We show that ignoring the morphological broadening effect when deriving line fluxes from grism spectra results in a systematic reduction of flux by ∼30% on average. This discrepancy appears to affect all the lines and thus does not lead to significant changes in flux ratio and metallicity measurements. This assessment of the morphological broadening effect using JWST data presents, for the first time, an important guideline for future work deriving galaxy line fluxes from wide-field slitless spectroscopy, such as Euclid, Roman, and the Chinese Space Station Telescope.

Publisher

American Astronomical Society

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