Investigating non-LTE abundances of Neodymium (Nd) in metal-poor FGK stars
arXiv:2509.22811 · doi:10.3847/1538-4357/ae0b59
Abstract
The dominant site(s) of the -process are a subject of current debate. Ejecta from -process enrichment events like kilonovae are difficult to directly measure, so we must instead probe abundances in metal-poor stars to constrain -process models. This requires state-of-the-art Non-Local Thermodynamic Equilibrium (NLTE) modeling, as LTE is a poor approximation for the low-opacity atmospheres of metal-poor giants. Neodymium (Nd) is a prominent -process element detected in both near-infrared kilonovae spectra and spectra of metal-poor stars, so precise Nd stellar abundances are particularly needed to model kilonovae and constrain -process sites. We thus constructed a Nd I / Nd II model atom to compute NLTE abundances in FGK metal-poor stars. We obtain , in agreement with the meteoritic value, when calibrating the model atom with a Drawin hydrogen collision factor of . For a sample of metal-poor -process enhanced stars with observed optical and near-infrared Nd II lines, we find NLTE Nd corrections in the range to dex. Optical and UV lines have positive NLTE corrections, whereas H band lines have negative corrections. Additionally, we compute a large grid of NLTE corrections for 122 Nd II spectral lines ranging from the UV to the H band, for stellar parameters of typical metal-poor FGK dwarfs and giants with $-3.00\le\mbox{[Fe/H]}\le-1.00$ and . Within this grid, we find NLTE corrections ranging from to dex. Deviations from LTE are found to be strongest for blue lines with low excitation potentials in the most metal-poor giants.
23 pages, 13 figures, to be published in ApJ
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