TP-AGB stars and stellar population properties of a post-starburst galaxy at $z \sim 2$ through optical and NIR spectroscopy with JWST
Davide Bevacqua, Paolo Saracco, Francesco La Barbera, Guido De Marchi, Roberto De Propris, Fabio Ditrani, Anna R. Gallazzi, Giovanna Giardino, Danilo Marchesini, Anna Pasquali, Tim D. Rawle, Chiara Spiniello, Alexandre Vazdekis, and Stefano Zibetti

TL;DR
This study uses JWST spectroscopy to analyze a post-starburst galaxy at z~2, revealing insights into its stellar population, star formation history, and the role of TP-AGB stars, highlighting the need for improved models.
Contribution
First detailed NIR spectral analysis of a high-redshift post-starburst galaxy, constraining TP-AGB star contributions and stellar population models at z~2.
Findings
Galaxy assembled mass rapidly and quenched ~0.4 Gyr before observation.
Weak emission likely from residual star formation or low-luminosity AGN.
Current models struggle to reproduce NIR spectral indices at high redshift.
Abstract
We present a detailed optical and NIR spectral analysis of J-138717, a post-starburst galaxy at observed with JWST/NIRSpec, for which we derive a stellar mass of M and a stellar velocity dispersion of km s. We estimate an age of Gyr and a sub-solar metallicity (between and dex). We find generally consistent results when fitting the optical and NIR wavelength ranges separately or using different model libraries. The reconstruction of the star formation history indicates that the galaxy assembled most of its mass quickly and then rapidly quenched, Gyr prior to observation. Line diagnostics suggest that the weak emission is probably powered by residual star formation (SFRM yr) or a low-luminosity AGN, with no strong evidence for outflows in ionized or neutral gas.…
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