$H$-band Temperature and Metallicity Indicators for Cool Giants: Empirical Relations in Bayesian Framework
Abstract
We explored here the near-infrared -band atmospheric window aiming to provide quantitative diagnostic tools for deriving stellar parameters, for instance, effective temperature () and metallicity ([]), of cool giants ( 5000 K) using low-resolution spectra. We obtained 177 cool giants from the X-shooter spectral library covering a wider metallicity range (2.35 dex [] 0.5 dex) than in earlier works. Degrading the spectral resolution to R 1200, we estimated equivalent widths of several important spectral features, and the behavior of spectral features with stellar parameters are studied. Also, the empirical relations for deriving and [] are established in the Bayesian framework. We found that CO at 1.56 m and 1.62 m, and CO+MgI at 1.71 m are the best three indicators with a typical accuracy of 153 K, 123 K and 107 K, respectively. The cubic Bayesian model provides the best metallicity estimator with a typical accuracy of 0.22 dex, 0.28 dex, and 0.24 dex for FeH at 1.62 m, CO at 1.64 m, and Fe I at 1.66 m, respectively. We also showed a detailed quantitative metallicity dependence of EWs correlations defining three metallicity groups, supersolar ([] 0.0 dex), solar (0.3 dex [] 0.3 dex), and subsolar ([] 0.3 dex), from Hierarchical Bayesian modelling. The difference between the solar and subsolar relationship is statistically significant, but such difference is not evident between the solar and supersolar groups.
Cite
@article{arxiv.2201.05837,
title = {$H$-band Temperature and Metallicity Indicators for Cool Giants: Empirical Relations in Bayesian Framework},
author = {Supriyo Ghosh and J. P. Ninan and D. K. Ojha},
journal= {arXiv preprint arXiv:2201.05837},
year = {2022}
}
Comments
15 pages, 16 figures, 5 tables. Accepted for publication in MNRAS