English

Y Gem, a symbiotic star outshone by its asymptotic giant branch primary component

Solar and Stellar Astrophysics 2024-12-19 v2 High Energy Astrophysical Phenomena

Abstract

A considerable number of asymptotic giant branch (AGB) stars exhibit UV excess and/or X-ray emission that indicates a binary companion. AGB stars are so bright that they easily outshine their companions. This almost prevents their identification. Y Gem has been known for some decades to be an AGB star that is bright in the far-UV and X-rays, but it is unclear whether its companion is a main-sequence star or a white dwarf (WD) in a symbiotic system (SySt). Our goal is to uncover the true nature of Y Gem, which will help us to study the possible misidentified population of SySts. Multiwavelength IR, optical, UV, and X-ray observations were analyzed to investigate the properties of the stellar components and the accretion process in Y Gem. In particular, an optical spectrum of Y Gem is presented here for the first time, while X-ray data are interpreted by means of reflection models produced by an accretion disk and material in its vicinity. The optical spectrum exhibits the typical sawtooth-shaped features of molecular absorptions in addition to narrow recombination and forbidden emission lines. The emission lines and the analysis of the extinction-corrected UV spectrum suggest a hot component with TeffT_\mathrm{eff}\approx60,000 K, LL=140 L_{\odot}, and RR=0.11 R_{\odot} that very likely is an accreting WD. The late component is found to be an 1.1 M_\odot AGB star with TeffT_\mathrm{eff}=3350 K and RR=240 R_\odot. Using IR, optical, UV, and X-ray data, we found that Y Gem is an S-type SySt whose compact component is accreting at an estimated mass-accretion rate of M˙acc=2.3×107\dot{M}_\mathrm{acc}=2.3\times10^{-7} M_\odot yr1^{-1}. At this accretion rate, the accreting WD has reached the stable and steady burning phase in which no recurrent events are expected.

Keywords

Cite

@article{arxiv.2411.14270,
  title  = {Y Gem, a symbiotic star outshone by its asymptotic giant branch primary component},
  author = {M. A. Guerrero and D. A. Vasquez-Torres and J. B. Rodríguez-González and J. A. Toalá and R. Ortiz},
  journal= {arXiv preprint arXiv:2411.14270},
  year   = {2024}
}

Comments

13 pages, 9 Figures, 4 Tables; To appear in A&A