Cepheid Metallicity in the Leavitt Law (C--MetaLL) survey: VIII. High-Resolution IGRINS Spectroscopy of 23 Classical Cepheids: Validating NIR Abundances
G. Catanzaro, A. Bhardwaj, V. Ripepi, E. Trentin, M. Marconi, M. Romaniello, N. Matsunaga, G. De Somma, T. Sicignano, I. Musella, Y. Soung-Chul

TL;DR
This study validates near-infrared high-resolution spectroscopy for determining chemical abundances in Cepheids, showing it aligns well with optical results and enables access to new elemental tracers, thus supporting future large-scale surveys.
Contribution
It provides the first homogeneous NIR-based measurements of P, K, and Yb in Cepheids, confirming the reliability of NIR spectroscopy for chemical abundance analysis.
Findings
NIR and optical abundances agree closely.
Fe, Mg, and Si gradients match previous optical studies.
First NIR measurements of P, K, and Yb in Cepheids.
Abstract
Context. While most chemical abundance studies of Cepheids rely on optical spectroscopy, near-infrared (NIR) observations offer advantages in terms of reduced extinction and access to new elemental tracers. Aims. We aim to validate NIR-based abundance determinations against optical results and to explore the diagnostic power of spectral lines inaccessible in the optical domain. The H and K bands allow us to trace elements such as P, K, and Yb, while also probing obscured Galactic regions and more distant Cepheids. Methods. We obtained high-resolution (R=45000) H- and K-band spectra for 21 Galactic and 2 LMC Classical Cepheids using IGRINS. Atmospheric parameters were derived from photometry and line-depth ratios (Teff), empirical calibrations (log g), and spectral fitting. Abundances of 16 elements were determined via LTE full spectral synthesis and compared with optical literature…
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