English

Discovery of a hot post-AGB star in Galactic globular cluster E3

Solar and Stellar Astrophysics 2024-05-08 v2 Astrophysics of Galaxies Instrumentation and Methods for Astrophysics

Abstract

We report a new hot post-asymptotic giant branch (PAGB) star in the Galactic globular cluster (GC) E3, which is one of the first of the identified PAGB stars in a GC to show a binary signature. The star stands out as the brightest source in E3 in the \mbox{{\em Astrosat}}/UVIT images. We confirmed its membership with the cluster E3 using Gaia DR3 kinematics and parallax measurements. We supplemented the photometric observations with radial velocities (RVs) from high-resolution spectroscopic observations at two epochs and with ground- and space-based photometric observations from 0.13 μ\mum to 22 μ\mum. We find that the RVs vary over \sim6 \kms\ between the two epochs. This is an indication of the star being in a binary orbit. A simulation of possible binary systems with the observed RVs suggests a binary period of either 39.12 days or 17.83 days with mass ratio q\geq1.0. The [Fe/H] derived using the high-resolution spectra is \sim -0.7 dex, which closely matches the cluster metallicity. The spectroscopic and photometric measurements suggest \Teff\ and logg\log g of the star as 17\,500±\pm1\,000~K and 2.37±\pm0.20~dex, respectively. Various PAGB evolutionary tracks on the Hertzsprung--Russell (H-R) diagram suggest a current mass of the star in the range 0.51-0.55 \Msun. The star is enriched with C and O abundances, showing similar CNO abundances compared to the other PAGB stars in GCs with the evidence of the third dredge-up on the AGB phase.

Keywords

Cite

@article{arxiv.2403.12907,
  title  = {Discovery of a hot post-AGB star in Galactic globular cluster E3},
  author = {R. Kumar and A. Moharana and S. Piridi and A. C. Pradhan and K. G. Hełminiak and N. Ikonnikova and A. Dodin and R. Szczerba and M. Giersz and D. K. Ojha and M. R. Samal},
  journal= {arXiv preprint arXiv:2403.12907},
  year   = {2024}
}

Comments

Published in A&A Letters, Published Version