Discovery of the massive overcontact binary VFTS 352: Evidence for enhanced internal mixing
arXiv:1509.08940 · doi:10.1088/0004-637X/812/2/102
Abstract
The contact phase expected to precede the coalescence of two massive stars is poorly characterized due to the paucity of observational constraints. Here we report on the discovery of VFTS 352, an O-type binary in the 30 Doradus region, as the most massive and earliest spectral type overcontact system known to date. We derived the 3D geometry of the system, its orbital period d, components' effective temperatures -- K and K -- and dynamical masses -- and . Compared to single-star evolutionary models, the VFTS 352 components are too hot for their dynamical masses by about 2700 and 1100 K, respectively. These results can be explained naturally as a result of enhanced mixing, theoretically predicted to occur in very short-period tidally-locked systems. The VFTS 352 components are two of the best candidates identified so far to undergo this so-called chemically homogeneous evolution. The future of VFTS 352 is uncertain. If the two stars merge, a very rapidly rotating star will be produced. Instead, if the stars continue to evolve homogeneously and keep shrinking within their Roche Lobes, coalescence can be avoided. In this case, tides may counteract the spin down by winds such that the VFTS 352 components may, at the end of their life, fulfill the requirements for long gamma-ray burst (GRB) progenitors in the collapsar scenario. Independently of whether the VFTS 352 components become GRB progenitors, this scenario makes VFTS 352 interesting as a progenitor of a black hole binary, hence as a potential gravitational wave source through black hole-black hole merger.
23 pages, 6 figures, accepted for publication in ApJ
References in corpus (17)
- Binary interaction dominates the evolution of massive stars
- Pre-Supernova Evolution of Massive Single and Binary Stars
- Southern Massive Stars at High Angular Resolution: Observational Campaign and Companion Detection
- The R136 star cluster hosts several stars whose individual masses greatly exceed the accepted 150 Msun stellar mass limit
- The High Angular Resolution Multiplicity of Massive Stars
- The Galactic O-Star Spectroscopic Survey (GOSSS). II. Bright Southern Stars
- The incidence of stellar mergers and mass gainers among massive stars
- Rotational mixing in massive binaries: detached short-period systems
- BONNSAI: a Bayesian tool for comparing stars with stellar evolution models
- Efficiency of mass transfer in massive close binaries, Tests from double-lined eclipsing binaries in the SMC
- The ages of young star clusters, massive blue stragglers and the upper mass limit of stars: analysing age dependent stellar mass functions
- The VLT-FLAMES Tarantula Survey XVI. The optical+NIR extinction laws in 30 Doradus and the photometric determination of the effective temperatures of OB stars
- The VLT-FLAMES Tarantula Survey XIV. The O-Type Stellar Content of 30 Doradus
- Violent Stellar Merger Model for Transient Events
- The Struve-Sahade effect in the optical spectra of O-type binaries I. Main-sequence systems
- MY Camelopardalis, a very massive merger progenitor
- Light Curve Analysis of Hipparcos Data for the Massive O-type Eclipsing Binary UW CMa
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