Clues about the scarcity of stripped-envelope stars from the evolutionary state of the sdO+Be binary system phi Persei
arXiv:1803.02379 · doi:10.1051/0004-6361/201731194
Abstract
Stripped-envelope stars (SESs) form in binary systems after losing mass through Roche-lobe overflow. They bear astrophysical significance as sources of UV and ionizing radiation in older stellar populations and, if sufficiently massive, as stripped supernova progenitors. Binary evolutionary models predict them to be common, but only a handful of subdwarfs (i.e., SESs) with B-type companions are known. This could be the result of observational biases hindering detection, or an incorrect understanding of binary evolution. We reanalyze the well-studied post-interaction binary phi Persei. Recently, new data improved the orbital solution of the system, which contains a ~1.2 Msun SES and a rapidly rotating ~9.6 Msun Be star. We compare with an extensive grid of evolutionary models using a Bayesian approach and find initial masses of the progenitor of 7.2+/-0.4 Msun for the SES and 3.8+/-0.4 Msun for the Be star. The system must have evolved through near-conservative mass transfer. These findings are consistent with earlier studies. The age we obtain, 57+/-9 Myr, is in excellent agreement with the age of the alpha Persei cluster. We note that neither star was initially massive enough to produce a core-collapse supernova, but mass exchange pushed the Be star above the mass threshold. We find that the subdwarf is overluminous for its mass by almost an order of magnitude, compared to the expectations for a helium core burning star. We can only reconcile this if the subdwarf is in a late phase of helium shell burning, which lasts only 2-3% of the total lifetime as a subdwarf. This could imply that up to ~50 less evolved, dimmer subdwarfs exist for each system similar to phi Persei. Our findings can be interpreted as a strong indication that a substantial population of SESs indeed exists, but has so far evaded detection because of observational biases and lack of large-scale systematic searches.
11 pages, 5 figures, accepted for publication in A&A
References in corpus (17)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Binary interaction dominates the evolution of massive stars
- Rotational mixing in massive binaries: detached short-period systems
- Binary star progenitors of long gamma-ray bursts
- Efficiency of mass transfer in massive close binaries, Tests from double-lined eclipsing binaries in the SMC
- The Tarantula Massive Binary Monitoring: I. Observational campaign and OB-type spectroscopic binaries
- Hot subdwarf binaries from the MUCHFUSS project - Analysis of 12 new systems and a study of the short-period binary population
- Thermohaline mixing and gravitational settling in carbon-enhanced metal-poor stars
- Gamma-ray burst jet breaks revisited
- A Modern Search for Wolf-Rayet Stars in the Magellanic Clouds: First Results
- Spectral and spatial imaging of the Be+sdO binary phi Persei
- Detection of a Hot Subdwarf Companion to the Be Star FY Canis Majoris
- Detection of the Ultraviolet Spectrum of the Hot Subdwarf Companion of 60 Cygni (B1 Ve) from a Survey of IUE Spectra of Be Stars
- The qWR star HD 45166. II. Fundamental stellar parameters and evidence of a latitude-dependent wind
- The Hot Companion and Circumbinary Disk of the Be Star HR 2142
- A Modern Search for Wolf-Rayet Stars in the Magellanic Clouds. II. A Second Year of Discoveries
- A Modern Search for Wolf-Rayet Stars in the Magellanic Clouds. III. A Third Year of Discoveries
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- The Detection and Characterization of Be+sdO Binaries from HST/STIS FUV Spectroscopy
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- The diverse lives of progenitors of hydrogen-rich core-collapse supernovae: the role of binary interaction
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- A stripped-companion origin for Be stars: clues from the putative black holes HR 6819 and LB-1
- Coping with loss: Stability of mass transfer from post-main sequence donor stars
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- Aluminium-26 from massive binary stars I: non-rotating models
- Dynamical masses of the primary Be star and the secondary sdB star in the single-lined binary kappa Dra (B6 IIIe)
- A dearth of young and bright massive stars in the Small Magellanic Cloud
- Stars stripped in binaries -- the living gravitational wave sources
- 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
- The IACOB project XII. A new grid of northern standards for the spectral classification of B-type stars
- Gamma Cas Stars as Be + White Dwarf Binary Systems
- Phase-dependent study of near-infrared disk emission lines in LB-1
- Birth of a Be star: an APOGEE search for Be stars forming through binary mass transfer
- The B-type Binaries Characterisation Programme II. VFTS 291: A stripped star from a recent mass transfer phase
- The initial spin distribution of B-type stars revealed by the split main sequences of young star clusters
- X-Shooting ULLYSES: Massive Stars at low metallicity VIII. Stellar and wind parameters of newly revealed stripped stars in Be binaries
- To Be or not to Be: the role of rotation in modeling Galactic Be X-ray Binaries
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- A census of OBe stars in nearby metal-poor dwarf galaxies reveals a high fraction of extreme rotators
- On the Neutron Star/Black Hole Mass Gap and Black Hole Searches
- Ultraviolet Spectropolarimetry: on the origin of rapidly rotating B stars
- Surveying the Bright Stars by Optical Interferometry III: A Magnitude-Limited Multiplicity Survey of Classical Be-Stars
- Gem: a hierarchical triple system with an outer Be star
- The spins of stripped B stars support magnetic internal angular momentum transport
- Boron depletion in Galactic early B-type stars reveals two different main sequence star populations
- Optical spectroscopy of Galactic field Classical Be stars
- Populations of evolved massive binary stars in the Small Magellanic Cloud II: Predictions from rapid binary evolution
- The Demographics of Binary Companions to Stripped-Envelope Supernovae: Confronting Observations with Population Synthesis
- The IACOB project XIII. Helium enrichment in O-type stars as a tracer of past binary interaction
- The magnetic field of the stripped primary in the upsilon Sgr system, a member of the rare class of hydrogen-deficient binaries
- Strong Variability in AzV 493, an Extreme Oe-Type Star in the SMC
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