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On the Stellar Populations of Galaxies at z=9-11: The Growth of Metals and Stellar Mass at Early Times

Author(s)
Tacchella, SandroFinkelstein, Steven L.Bagley, MicaelaDickinson, MarkFerguson, Henry C.Giavalisco, MauroGraziani, LucaGrogin, Norman A.Hathi, NimishHutchison, Taylor A.Jung, IntaeKoekemoer, Anton M.Larson, Rebecca L.Papovich, CaseyPirzkal, NorbertRojas-Ruiz, SofiaSong, MimiSchneider, RaffaellaSomerville, Rachel S.Wilkins, Stephen M.Yung, L. Y. Aaron
Issued Date
2022-03
DOI
10.3847/1538-4357/ac4cad
URI
https://scholarworks.unist.ac.kr/handle/201301/57743
Fulltext
https://iopscience.iop.org/article/10.3847/1538-4357/ac4cad
Citation
ASTROPHYSICAL JOURNAL, v.927, no.2, pp.170
Abstract
We present a detailed stellar population analysis of 11 bright (H < 26.6) galaxies at z = 9-11 (three spectroscopically confirmed) to constrain the chemical enrichment and growth of stellar mass of early galaxies. We use the flexible Bayesian spectral energy distribution (SED) fitting code Prospector with a range of star formation histories (SFHs), a flexible dust attenuation law, and a self-consistent model of emission lines. This approach allows us to assess how different priors affect our results and how well we can break degeneracies between dust attenuation, stellar ages, metallicity, and emission lines using data that probe only the rest-frame ultraviolet (UV) to optical wavelengths. We measure a median observed UV spectral slope beta=-1.87(-0.43)(+0.35) for relatively massive star-forming galaxies (9 10.
Publisher
IOP PUBLISHING LTD
ISSN
0004-637X
Keyword
UV-CONTINUUM SLOPESPROBING COSMIC DAWNGIANT BRANCH STARSSTAR-FORMATION HISTORIESSIMILAR-TO 6ULTRAVIOLET LUMINOSITY FUNCTIONSPECTRAL ENERGY-DISTRIBUTIONSEPOCH SIMULATIONS FLARESHUBBLE FRONTIER FIELDSHIGH-REDSHIFT QUASARS

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