English

Gaia FGK Benchmark Stars: Selecting Infrared Lines for Abundance Determination

Solar and Stellar Astrophysics 2026-02-17 v1 Astrophysics of Galaxies

Abstract

The advent of new and more powerful infrared spectrographs has significantly motivated the advancement of the study of atomic and molecular line lists and stellar atmosphere models. While optical abundance determinations rely on extensively validated line lists and modeling frameworks, infrared measurements still face larger uncertainties, largely driven by the choice of atmospheric models and the quality of the available atomic data. In this work, we aim to deliver a homogeneous and reproducible set of atomic absorption lines in the Y, J, and H bands (9800 - 18000 (Angstrom)), based exclusively on laboratory atomic data. We analyse CRIRES spectra of six Gaia FGK Benchmark Stars spanning a wide range in effective temperature, surface gravity, and chemical composition. Synthetic spectra are computed using the benchmark stellar parameters, and each transition is evaluated independently in every star through a quantitative sequence that examines line depth, saturation, blending (purity), and the agreement between observed and synthetic line profiles. We identify a set of robust atomic transitions in these bands that remain consistent across the full range of stellar parameters represented in our sample. Lines of alpha-elements such as Mg I, Si I, and Ca I, together with several Fe I transitions, satisfy all robustness criteria. Among the neutron-capture species explored, only Sr II provides lines that consistently meet our requirements. Beyond the specific list of accepted transitions, this study demonstrates that a fully quantitative, multi-criteria framework provides a transparent and reproducible foundation for near-infrared line validation as laboratory data, stellar atmosphere models, and instrumentation continue to improve.

Keywords

Cite

@article{arxiv.2602.14294,
  title  = {Gaia FGK Benchmark Stars: Selecting Infrared Lines for Abundance Determination},
  author = {Scarlet Elgueta and Paula Jofré and Claudia Aguilera-Gómez and Ditte Slumstrup and Álvaro Rojas-Arriagada and Ulrike Heiter and Laia Casamiquela and Manuela Zoccali and Clare Worley and Caroline Soubiran},
  journal= {arXiv preprint arXiv:2602.14294},
  year   = {2026}
}

Comments

22 pages, 7 figures