English

Tracing the evolution of short-period binaries with super-synchronous fast rotators

Solar and Stellar Astrophysics 2024-01-23 v1 Instrumentation and Methods for Astrophysics

Abstract

The initial distribution of rotational velocities of stars is still poorly known, and how the stellar spin evolves from birth to the various end points of stellar evolution is an actively debated topic. Binary interactions are often invoked to explain the existence of extremely fast-rotating stars (vsiniv\sin\,i \gtrsim 200 kms1km\,s^{-1}). The primary mechanisms through which binaries can spin up stars are tidal interactions, mass transfer, and possibly mergers. To evaluate these scenarios, we investigated in detail the evolution of three known fast-rotating stars in short-period spectroscopic and eclipsing binaries, namely HD 25631, HD 191495, and HD 46485, with primaries of masses of 7, 15, and 24 MM_{\odot}, respectively, with companions of 1M\sim1\,M_\odot and orbital periods of less than 7 days. These systems belong to a recently identified class of binaries with extreme mass ratios, whose evolutionary origin is still poorly understood. We evaluated in detail three scenarios that could explain the fast rotation observed in these binaries: it could be primordial, a product of mass transfer, or the result of a merger within an originally triple system. We computed grids of single and binary MESA models varying tidal forces and initial binary architectures to investigate the evolution and reproduce observational properties of these systems. We find that, because of the extreme mass-ratio between binary components, tides have a limited impact, regardless of the prescription used, and that the observed short orbital periods are at odds with post-mass-transfer scenarios. The most likely scenario to form such young, rapidly rotating, and short-period binaries is primordial rotation, implying that the observed binaries are pre-interaction ones. These binaries show that the initial spin distribution of massive stars can have a wide range of rotational velocities.

Keywords

Cite

@article{arxiv.2401.11304,
  title  = {Tracing the evolution of short-period binaries with super-synchronous fast rotators},
  author = {N. Britavskiy and M. Renzo and Y. Nazé and G. Rauw and P. Vynatheya},
  journal= {arXiv preprint arXiv:2401.11304},
  year   = {2024}
}

Comments

Accepted for publication in the Astronomy & Astrophysics journal. 20 pages, 17 figures. Reproducible at https://github.com/NikolayBritavskiyAstro/fast_rotating_binaries; the input and output MESA data are available at https://zenodo.org/records/10479754