Gaia FGK Benchmark Stars: spectral library, metallicities and abundances of $α$ and Fe-peak elements of the third version

Fuente: arXiv
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Main Authors: Casamiquela, L., Soubiran, C., Jofré, P., Vitali, S., Blanco-Cuaresma, S., Lagarde, N., Slumstrup, D., Palmerio, J. T., Brouillet, N., Elgueta, S., Rojas-Arriagada, A., Aguilera-Gómez, C., Hernández-Araya, I., Creevey, O. L., Heiter, U., Balaguer-Núñez, L., Carrera, R.
Format: Preprint
Published: 2025
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author Casamiquela, L.
Soubiran, C.
Jofré, P.
Vitali, S.
Blanco-Cuaresma, S.
Lagarde, N.
Slumstrup, D.
Palmerio, J. T.
Brouillet, N.
Elgueta, S.
Rojas-Arriagada, A.
Aguilera-Gómez, C.
Hernández-Araya, I.
Creevey, O. L.
Heiter, U.
Balaguer-Núñez, L.
Carrera, R.
author_facet Casamiquela, L.
Soubiran, C.
Jofré, P.
Vitali, S.
Blanco-Cuaresma, S.
Lagarde, N.
Slumstrup, D.
Palmerio, J. T.
Brouillet, N.
Elgueta, S.
Rojas-Arriagada, A.
Aguilera-Gómez, C.
Hernández-Araya, I.
Creevey, O. L.
Heiter, U.
Balaguer-Núñez, L.
Carrera, R.
contents The accurate determination of chemical abundances in stars plays a pivotal role in understanding stellar structure and evolution, nucleosynthesis, and the chemical enrichment history of the Milky Way. Benchmark stars with precise and accurate atmospheric parameters and abundances are indispensable for calibrating spectroscopic surveys and testing stellar atmosphere models. This study focuses on the compilation of high-quality spectra and the determination of LTE chemical abundances of iron-peak and $α$ elements for the third version of the Gaia FGK Benchmark Stars (GBSv3). We compiled spectra of the GBSv3 from public archives and complemented these with our own observations. We use fundamental atmospheric parameters from Soubiran et al. 2024 to derive the chemical abundances and perform a spectroscopic analysis using the public code iSpec. We compile a homogeneous spectral library of high-resolution (42,000) and high signal-to-noise ($>100$) normalised spectra for 202 stars: including the 192 GBSv3, 9 stars with indirect measurement of the angular diameter from previous GBS versions, and the Sun. Using four radiative transfer codes, we derive chemical abundances of 13 chemical species (Fe I, Fe II, Mg I, Si I, Ca I, Ti I, Ti II, Sc II, V I, Cr I, Mn I, Co I, Ni I). We make an in-depth study of several sources of error. The GBSv3 contributes to the legacy samples of spectroscopic reference stars with improved statistics and homogeneity. This work offers the community a homogeneous spectral library and robust reference abundances for iron-peak and $α$ elements, supported by an extensive analysis of the associated uncertainties.
format Preprint
id arxiv_https___arxiv_org_abs_2504_19648
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Gaia FGK Benchmark Stars: spectral library, metallicities and abundances of $α$ and Fe-peak elements of the third version
Casamiquela, L.
Soubiran, C.
Jofré, P.
Vitali, S.
Blanco-Cuaresma, S.
Lagarde, N.
Slumstrup, D.
Palmerio, J. T.
Brouillet, N.
Elgueta, S.
Rojas-Arriagada, A.
Aguilera-Gómez, C.
Hernández-Araya, I.
Creevey, O. L.
Heiter, U.
Balaguer-Núñez, L.
Carrera, R.
Solar and Stellar Astrophysics
Astrophysics of Galaxies
The accurate determination of chemical abundances in stars plays a pivotal role in understanding stellar structure and evolution, nucleosynthesis, and the chemical enrichment history of the Milky Way. Benchmark stars with precise and accurate atmospheric parameters and abundances are indispensable for calibrating spectroscopic surveys and testing stellar atmosphere models. This study focuses on the compilation of high-quality spectra and the determination of LTE chemical abundances of iron-peak and $α$ elements for the third version of the Gaia FGK Benchmark Stars (GBSv3). We compiled spectra of the GBSv3 from public archives and complemented these with our own observations. We use fundamental atmospheric parameters from Soubiran et al. 2024 to derive the chemical abundances and perform a spectroscopic analysis using the public code iSpec. We compile a homogeneous spectral library of high-resolution (42,000) and high signal-to-noise ($>100$) normalised spectra for 202 stars: including the 192 GBSv3, 9 stars with indirect measurement of the angular diameter from previous GBS versions, and the Sun. Using four radiative transfer codes, we derive chemical abundances of 13 chemical species (Fe I, Fe II, Mg I, Si I, Ca I, Ti I, Ti II, Sc II, V I, Cr I, Mn I, Co I, Ni I). We make an in-depth study of several sources of error. The GBSv3 contributes to the legacy samples of spectroscopic reference stars with improved statistics and homogeneity. This work offers the community a homogeneous spectral library and robust reference abundances for iron-peak and $α$ elements, supported by an extensive analysis of the associated uncertainties.
title Gaia FGK Benchmark Stars: spectral library, metallicities and abundances of $α$ and Fe-peak elements of the third version
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2504.19648