Stellar Population Astrophysics (SPA) with the TNG

Author:

Jian MingjieORCID,Fu XiaotingORCID,Matsunaga Noriyuki,D’Orazi Valentina,Bragaglia AngelaORCID,Taniguchi DaisukeORCID,Fang Min,Sanna NicolettaORCID,Lucatello SaraORCID,Frasca AntonioORCID,Alonso-Santiago JavierORCID,Catanzaro GiovanniORCID,Oliva ErnestoORCID

Abstract

The precise measurement of stellar abundances plays a pivotal role in providing constraints on the chemical evolution of the Galaxy. However, before spectral lines can be employed as reliable abundance indicators, particularly for challenging elements such as helium, they must undergo thorough scrutiny. Galactic open clusters, representing well-defined single stellar populations, offer an ideal setting for unfolding the information stored in the helium spectral line feature. In this study, we characterise the profile and strength of the helium transition at around 10 830 Å (He 10 830) in nine giant stars in the Galactic open cluster Stock 2. To remove the influence of weak blending lines near the helium feature, we calibrated their oscillator strengths (log 𝑔f) by employing corresponding abundances obtained from simultaneously observed optical spectra. Our observations reveal that the He 10 830 in all the targets is observed in absorption, with line strengths categorised into two groups. Three stars exhibit strong absorption, including a discernible secondary component, while the remaining stars exhibit weaker absorption. The lines are in symmetry and align with or near their rest wavelengths, suggesting a stable upper chromosphere without a significant systematic mass motion. We find a correlation between the He 10 830 strength and the Ca II log RHK index, with a slope similar to that reported in previous studies on dwarf stars. This correlation underscores the necessity of accounting for the stellar chromosphere structure when employing He 10 830 as a probe for the stellar helium abundance. The procedure of measuring the He 10 830 we developed in this study is applicable not only to other Galactic open clusters but also to field stars, and we plan to use it to map the helium abundance across various types of stars in the future.

Funder

Japan Society for the Promotion of Science

National Natural Science Foundation of China

China Manned Space Project

Mini-Grant INAF 2022

Large-Grant INAF YODA

Publisher

EDP Sciences

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