English

A partially stripped massive star in a Be binary at low metallicity: A missing link towards Be X-ray binaries and double neutron star mergers

Solar and Stellar Astrophysics 2023-06-21 v2 High Energy Astrophysical Phenomena

Abstract

Standard binary evolutionary models predict a significant population of core helium-burning stars that lost their hydrogen-rich envelope after mass transfer via Roche-lobe overflow. However, there is a scarcity of observations of such stripped stars in the intermediate mass regime (~1.5 - 8M M_{\odot}), which are thought to be prominent progenitors of SN Ib/c. Especially at low metallicity, a significant fraction of these stars is expected to be only partially stripped, retaining a significant amount of hydrogen on their surfaces. For the first time, we discovered a partially stripped massive star in a binary with a Be-type companion located in the Small Magellanic Cloud (SMC) using a detailed spectroscopic analysis. The stripped-star nature of the primary is revealed by the extreme CNO abundance pattern and very high luminosity-to-mass ratio, which suggest that the primary is likely shell-hydrogen burning. Our target SMCSGS-FS 69 is the most luminous and most massive system among the known stripped star + Be binaries, with Mstripped ~3M M_{\odot} and MBe ~17M M_{\odot}. Binary evolutionary tracks suggest an initial mass of Mini 12M\gtrsim 12 M_{\odot} for the stripped star and predict it to be in a transition phase towards a hot compact He star, which will eventually produce a stripped-envelope supernova. Our target marks the first representative of a so-far missing evolutionary stage in the formation pathway of Be X-ray binaries and double neutron star mergers.

Keywords

Cite

@article{arxiv.2305.14262,
  title  = {A partially stripped massive star in a Be binary at low metallicity: A missing link towards Be X-ray binaries and double neutron star mergers},
  author = {V. Ramachandran and J. Klencki and A. A. C. Sander and D. Pauli and T. Shenar and L. M. Oskinova and W. -R. Hamann},
  journal= {arXiv preprint arXiv:2305.14262},
  year   = {2023}
}

Comments

Accepted for publication as A&A Letter to the Editor