From Grism to IFU: Revising the Redshift and Nature of the Massive Dusty Galaxy S1 with JWST and ALMA
Mengyuan Xiao, Longji Bing, Gabriel Brammer, Pascal A. Oesch, David Elbaz, Rui Marques-Chaves, Miroslava Dessauges-Zavadsky, Benjamin Magnelli, Rychard Bouwens, Emanuele Daddi, Maximilien Franco, Qiusheng Gu, Thomas Herard-Demanche, Garth Illingworth, Ivo Labbe

TL;DR
This study revises the redshift and physical properties of the massive dusty galaxy S1 using JWST and ALMA data, highlighting the importance of multi-line spectroscopy and IFU observations for accurate characterization of early Universe galaxies.
Contribution
It provides the first secure spectroscopic redshift for S1, correcting previous contamination issues, and offers detailed insights into its dust, gas, and star formation properties.
Findings
Redshift revised from 5.58 to 3.2439
S1 is a massive, dust-rich, star-forming galaxy with moderate SFR
Dust emission size slightly smaller than stellar size
Abstract
We report a revised spectroscopic redshift for the dusty massive galaxy S1, previously inferred with an exceptionally high baryon-to-star conversion efficiency from NIRCam slitless grism data at . Our new JWST/NIRSpec IFU observations reveal multiple rest-frame optical and NIR emission lines, yielding a secure spectroscopic redshift of . We show that the earlier grism-based redshift resulted from contamination by a nearby galaxy whose dispersed spectral trace overlaps with S1, illustrating a known challenge of slitless spectroscopy when only a single dispersion angle and single emission feature are available. In addition, we present new ALMA 1 mm observations, which robustly detect dust emission ( mJy) and show a dust half-light radius ( kpc) slightly smaller than the stellar size…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Astrophysics and Star Formation Studies
