Boron depletion in Galactic early B-type stars reveals two different main sequence star populations
arXiv:2405.18266 · doi:10.1051/0004-6361/202450896
Abstract
The evolution and fate of massive stars are thought to be affected by rotationally induced internal mixing. The surface boron abundance is a sensitive tracer of this in early B-type main sequence stars. We test current stellar evolution models of massive main sequence stars which include rotational mixing through a systematic study of their predicted surface boron depletion. We construct a dense grid of rotating single star models using MESA, for which we employ a new nuclear network which follows all the stable isotopes up to silicon, including lithium, beryllium, boron, as well as the radioactive isotope aluminium-26. We also compile the measured physical parameters of the 90 Galactic early B-type stars with boron abundance information. We then compare each observed stars with our models through a Bayesian analysis, which yields the mixing efficiency parameter with which the star is reproduced the best, and the probability that it is represented by the stellar models. We find that about two-thirds of the sample stars are well represented by the stellar models, with the best agreement achieved for a rotational mixing efficiency of ~50% compared to the widely adopted value. The remaining one third of the stars, of which many are strongly boron depleted slow rotators, are largely incompatible with our models, for any rotational mixing efficiency. We investigate the observational incidence of binary companions and surface magnetic fields, and discuss their evolutionary implications. Our results confirm the concept of rotational mixing in radiative stellar envelopes. On the other hand, we find that a different boron depletion mechanism, and likely a different formation path, is required to explain about one-third of the sample stars. The large spread in the surface boron abundances of these stars may hold a clue to understanding their origin.
References in corpus (52)
- Modules for Experiments in Stellar Astrophysics (MESA)
- Binary interaction dominates the evolution of massive stars
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Pre-Supernova Evolution of Massive Single and Binary Stars
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- A Grid of NLTE Line-Blanketed Model Atmospheres of Early B-type Stars
- The effect of massive binaries on stellar populations and supernova progenitors
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- The Galactic WN stars: Spectral analyses with line-blanketed model atmospheres versus stellar evolution models with and without rotation
- How mergers magnetise massive stars
- Rotational mixing in massive binaries: detached short-period systems
- The VLT-FLAMES survey of massive stars: constraints on stellar evolution from the chemical compositions of rapidly rotating Galactic and Magellanic Cloud B-type stars
- The MiMeS survey of magnetism in massive stars: Magnetic analysis of the O-type stars
- The VLT-FLAMES survey of massive stars: rotation and nitrogen enrichment as the key to understanding massive star evolution
- A cosmic abundance standard: chemical homogeneity of the solar neighbourhood and the ISM dust-phase composition
- Angular momentum transport by heat-driven g-modes in slowly pulsating B stars
- The VLT-FLAMES survey of massive stars: atmospheric parameters and rotational velocity distributions for B-type stars in the Magellanic Clouds
- BONNSAI: a Bayesian tool for comparing stars with stellar evolution models
- The spectroscopic Hertzsprung-Russell diagram
- White dwarf spins from low mass stellar evolution models
- The spectroscopic Hertzsprung-Russell diagram of Galactic massive stars
- Abundance analysis of prime B-type targets for asteroseismology I. Nitrogen excess in slowly-rotating beta Cephei stars
- Discovery of magnetic fields in the beta Cephei star xi^1 CMa and in several Slowly Pulsating B stars
- Towards a better understanding of the evolution of Wolf-Rayet stars and Type Ib/Ic supernova progenitors
- Nitrogen enrichment, boron depletion and magnetic fields in slowly-rotating B-type dwarfs
- Tracing the young massive high-eccentricity binary system Theta 1 Orionis C through periastron passage
- Variability of OB stars from TESS southern Sectors 1-13 and high-resolution IACOB and OWN spectroscopy
- The Magnetic Early B-type Stars I: Magnetometry and Rotation
- On the Chemical Mixing Induced by Internal Gravity Waves (IGW)
- Detailed models of interacting short-period massive binary stars
- Investigating the lack of main-sequence companions to massive Be stars
- Stellar mergers as the origin of the blue main-sequence band in young star clusters
- Long-term evolution of a magnetic massive merger product
- Effects of close binary evolution on the main-sequence morphology of young star clusters
- The Tarantula Massive Binary Monitoring: III. Atmosphere analysis of double-lined spectroscopic systems
- Modeling of Magneto-Rotational Stellar Evolution I. Method and first applications
- An asteroseismic study of the beta Cephei star beta Canis Majoris
- New magnetic field measurements of beta Cephei stars and Slowly Pulsating B stars
- delta Ceti is not monoperiodic: seismic modeling of a beta Cephei star from MOST spacebased photometry
- Evidence of magnetic field decay in massive main-sequence stars
- Constraints on rotational mixing from surface evolution of light elements in massive stars
- The Single Star Path to Be Stars
- A new prescription for the mass-loss rates of WC and WO stars
- On the Origin of the Bimodal Rotational Velocity Distribution in Stellar Clusters: Rotation on the Pre-Main Sequence
- High-mass pulsators in eclipsing binaries observed using TESS
- The effects of surface fossil magnetic fields on massive star evolution: IV. Grids of models at Solar, LMC, and SMC metallicities
- Attempts to measure the magnetic field of the pulsating B star Eridani
- Close binary evolution. III. Impact of tides, wind magnetic braking, and internal angular momentum transport
- Internal circulation in tidally locked massive binary stars -- Consequences for double black hole formation
- The initial spin distribution of B-type stars revealed by the split main sequences of young star clusters
- Induced differential rotation and mixing in asynchronous binary stars
- The spins of stripped B stars support magnetic internal angular momentum transport
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- Mass-transferring binary stars as progenitors of interacting hydrogen-free supernovae
- The IACOB project XIII. Helium enrichment in O-type stars as a tracer of past binary interaction
- An interferometric study of B star multiplicity
- A comprehensive grid of massive binary evolution models for the Galaxy - Surface properties of post-mass transfer stars
- Binarity at LOw Metallicity (BLOeM): Projected rotational velocities
- The drastic impact of Eddington-limit induced mass ejections on massive star populations
- Mixing due to internal gravity waves can explain the CNO surface abundances of B-type detached eclipsing binaries and single stars
- The demographics of core-collapse supernovae. The role of binary evolution and CSM interaction
- Impact of the Tayler magnetic instability on the surface abundance of boron in massive stars
- EWOCS-V: Is Wd1-72 a recent post-interaction WR+O binary?
- Chemical fingerprints of binary mass transfer in massive stars