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Main Authors: Asad, Randa, Coelho, Paula R. T., John, Johina M., Chilingarian, Igor, Bruzual, Gustavo, Charlot, Stephane
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2504.03194
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author Asad, Randa
Coelho, Paula R. T.
John, Johina M.
Chilingarian, Igor
Bruzual, Gustavo
Charlot, Stephane
author_facet Asad, Randa
Coelho, Paula R. T.
John, Johina M.
Chilingarian, Igor
Bruzual, Gustavo
Charlot, Stephane
contents Stellar population synthesis (SPS) models are a key tool for deriving the age, metallicity, radial velocity and reddening of star clusters from their integrated spectra. Using a sample of 129 star clusters with high-quality spectra, we analyze the uncertainties associated with selecting an empirical versus a theoretical stellar spectral library in the SPS models. We find that the fits from the different models agree on the goodness of fit metrics and inferred reddening. However, the derived age and metallicity can be affected by the choice of the stellar library, with synthetic libraries tending to give lower age and metallicity, especially for spectra with low SNR. Ages and reddening values from SSP-equivalent fits are consistent with the multi-population fits, however, SSP-equivalent metallicities are affected by the coarse coverage of the SPS grid in [Fe/H]. When comparing the spectral fitting results with the literature, we find that (1) all models underestimate age for old and metal-poor systems; (2) on average, SPS models based on synthetic stellar libraries better match the isochrone ages and metallicities from high-resolution stellar spectroscopy.
format Preprint
id arxiv_https___arxiv_org_abs_2504_03194
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Semi-empirical versus Theoretical Stellar Population Models: a comparison with Star Clusters
Asad, Randa
Coelho, Paula R. T.
John, Johina M.
Chilingarian, Igor
Bruzual, Gustavo
Charlot, Stephane
Solar and Stellar Astrophysics
Astrophysics of Galaxies
Stellar population synthesis (SPS) models are a key tool for deriving the age, metallicity, radial velocity and reddening of star clusters from their integrated spectra. Using a sample of 129 star clusters with high-quality spectra, we analyze the uncertainties associated with selecting an empirical versus a theoretical stellar spectral library in the SPS models. We find that the fits from the different models agree on the goodness of fit metrics and inferred reddening. However, the derived age and metallicity can be affected by the choice of the stellar library, with synthetic libraries tending to give lower age and metallicity, especially for spectra with low SNR. Ages and reddening values from SSP-equivalent fits are consistent with the multi-population fits, however, SSP-equivalent metallicities are affected by the coarse coverage of the SPS grid in [Fe/H]. When comparing the spectral fitting results with the literature, we find that (1) all models underestimate age for old and metal-poor systems; (2) on average, SPS models based on synthetic stellar libraries better match the isochrone ages and metallicities from high-resolution stellar spectroscopy.
title Semi-empirical versus Theoretical Stellar Population Models: a comparison with Star Clusters
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2504.03194