English

The Active Chromospheres of Lithium-Rich Red Giant Stars

Solar and Stellar Astrophysics 2022-11-30 v1 Astrophysics of Galaxies

Abstract

We have gathered near-infrared zyJzyJ-band high resolution spectra of nearly 300 field red giant stars with known lithium abundances in order to survey their \species{He}{i} λ\lambda10830 absorption strengths. This transition is an indicator of chromospheric activity and/or mass loss in red giants. The majority of stars in our sample reside in the red clump or red horizontal branch based on their VJ,MVV-J,M_V color-magnitude diagram and their Gaia \teff, \logg\ values. Most of our target stars are Li-poor in the sense of having normally low Li abundances, defined here as \eps{Li}~<<~1.25. Over 90\% of these Li-poor stars have weak λ\lambda10830 features. But more than half of the 83 Li-rich stars (\eps{Li}~>>~1.25) have strong λ\lambda10830 absorptions. These large λ\lambda10830 lines signal excess chromospheric activity in Li-rich stars; there is almost no indication of significant mass loss. The Li-rich giants also may have a higher binary fraction than do Li-poor stars, based on their astrometric data. It appears likely that both residence on the horizontal branch and present or past binary interaction play roles in the significant Li-He connection established in this survey.

Keywords

Cite

@article{arxiv.2209.05941,
  title  = {The Active Chromospheres of Lithium-Rich Red Giant Stars},
  author = {Christopher Sneden and Melike Afsar and Zeynep Bozkurt and Monika Adamow and Anohita Mallick and Bacham E. Reddy and Steven Janowiecki and Suvrath Mahadevan and Brendan P. Bowler and Keith Hawkins and Karin Lind and Andrea K. Dupree and Joe P. Ninan and Neel Nagarajan and Gamze Bocek Topcu and Cynthia S. Froning and Chad F. Bender and Ryan Terrien and Lawrence W. Ramsey and Gregory N. Mace},
  journal= {arXiv preprint arXiv:2209.05941},
  year   = {2022}
}

Comments

Astrophysical Journal, in press