The mass distribution of stars stripped in binaries: The effect of metallicity
arXiv:2412.05356 · doi:10.1051/0004-6361/202453185
Abstract
Stars stripped of their hydrogen-rich envelopes through binary interaction are thought to be responsible for both hydrogen-poor supernovae and the hard ionizing radiation observed in low- galaxies. A population of these stars was recently observed for the first time, but their prevalence remains unknown. In preparation for such measurements, we estimate the mass distribution of hot, stripped stars using a population synthesis code that interpolates over detailed single and binary stellar evolution tracks. We predict that for a constant star formation rate of /yr and regardless of metallicity, a scalable model population contains ~30,000 stripped stars with mass and ~4,000 stripped stars that are sufficiently massive to explode (). Below , the distribution is metallicity-independent and can be described by a power law with the exponent . At higher masses and lower metallicity (), the mass distribution exhibits a drop. This originates from the prediction, frequently seen in evolutionary models, that massive low-metallicity stars do not expand substantially until central helium burning or later and therefore cannot form long-lived stripped stars. With weaker line-driven winds at low metallicity, this suggests that neither binary interaction nor wind mass loss can efficiently strip massive stars at low metallicity. As a result, a "helium-star desert" emerges around at , covering an increasingly large mass range with decreasing metallicity. We note that these high-mass stars are those that potentially boost a galaxy's He-ionizing radiation and that participate in the formation of merging black holes. This "helium-star desert" therefore merits further study.
21 pages, 9 figures, (including 2 appendices,) published in A&A
References in corpus (76)
- 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
- Physical Properties of Wolf-Rayet Stars
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- Formation of Double Neutron Star Systems
- Modules for Experiments in Stellar Astrophysics (MESA): Time-Dependent Convection, Energy Conservation, Automatic Differentiation, and Infrastructure
- New PARSEC evolutionary tracks of massive stars at low metallicity: testing canonical stellar evolution in nearby star forming dwarf galaxies
- JADES NIRSpec Spectroscopy of GN-z11: Lyman- emission and possible enhanced nitrogen abundance in a luminous galaxy
- Rotational mixing in massive binaries: detached short-period systems
- Ultraviolet spectra of extreme nearby star-forming regions --- approaching a local reference sample for JWST
- Efficiency of mass transfer in massive close binaries, Tests from double-lined eclipsing binaries in the SMC
- The role of mass transfer and common envelope evolution in the formation of merging binary black holes
- On the nature of massive helium star winds and Wolf-Rayet-type mass loss
- Different to the core: the pre-supernova structures of massive single and binary-stripped stars
- It has to be cool: on supergiant progenitors of binary black hole mergers from common-envelope evolution
- The impact of mass-transfer physics on the observable properties of field binary black hole populations
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- The expansion of stripped-envelope stars: consequences for supernovae and gravitational-wave progenitors
- The redshift evolution of the binary black hole merger rate: a weighty matter
- POSYDON: A General-Purpose Population Synthesis Code with Detailed Binary-Evolution Simulations
- Pre-supernova evolution, compact object masses and explosion properties of stripped binary stars
- Common envelope ejection in massive binary stars - Implications for the progenitors of GW150914 and GW151226
- LOSS Revisited - II: The relative rates of different types of supernovae vary between low- and high-mass galaxies
- The VMC Survey - XIV. First results on the look-back time star-formation rate tomography of the Small Magellanic Cloud
- Constraining mixing in massive stars in the Small Magellanic Cloud
- X-ray binaries as the origin of nebular HeII emission in low-metallicity star-forming galaxies
- Wolf-Rayet stars in the Small Magellanic Cloud: I. Analysis of the single WN stars
- The VANDELS survey: the stellar metallicities of star-forming galaxies at 2.5 < z < 5.0
- The COS Legacy Archive Spectroscopy SurveY (CLASSY) Treasury Atlas
- Why binary interaction does not necessarily dominate the formation of Wolf-Rayet stars at low metallicity
- Is HR 6819 a triple system containing a black hole? -- An alternative explanation
- Winds from stripped low-mass Helium stars and Wolf-Rayet stars
- Grids of stellar models with rotation IV. Models from 1.7 to 120 Msun at a metallicity Z = 0.0004
- Massive donors in interacting binaries: effect of metallicity
- Intense CIV and HeII Emission in z~0 Galaxies: Probing High-Energy Ionizing Photons
- The impact of common envelope development criteria on the formation of LIGO/Virgo sources
- The Star Formation Rate of the Milky Way as seen by Herschel
- LOSS Revisited - I: Unraveling correlations between supernova rates and galaxy properties, as measured in a reanalysis of the Lick Observatory Supernova Search
- Properties of WNh stars in the Small Magellanic Cloud: evidence for homogeneous evolution
- Partial-envelope stripping and nuclear-timescale mass transfer from evolved supergiants at low metallicity
- The MOSDEF-LRIS Survey: The Connection Between Massive Stars and Ionized Gas in Individual Galaxies at
- The contribution from stars stripped in binaries to cosmic reionization of hydrogen and helium
- The qWR star HD 45166. II. Fundamental stellar parameters and evidence of a latitude-dependent wind
- A stripped helium star in the potential black hole binary LB-1
- Exploring HeII1640 emission line properties at
- Effects of winds on the leftover hydrogen in massive stars following Roche lobe overflow
- Binary-Stripped Stars as Core-Collapse Supernovae Progenitors
- The fates of massive stars: exploring uncertainties in stellar evolution with METISSE
- A massive helium star with a sufficiently strong magnetic field to form a magnetar
- The excess of cool supergiants from contemporary stellar evolution models defies the metallicity-independent Humphreys-Davidson limit
- Characterizing Extreme Emission Line Galaxies II: A Self-Consistent Model of Their Ionizing Spectrum
- It's written in the massive stars: The role of stellar physics in the formation of black holes
- Population Synthesis of Galactic Be-star Binaries with A Helium-star Companion
- A spectroscopic multiplicity survey of Galactic Wolf-Rayet stars. I. The northern WC sequence
- Numerical experiments to help understand cause and effect in massive star evolution
- Constraining the Overcontact Phase in Massive Binary Evolution I. Mixing in V382 Cyg, VFTS 352, and OGLE SMC-SC10 108086
- Stars stripped in binaries -- the living gravitational wave sources
- A dearth of young and bright massive stars in the Small Magellanic Cloud
- 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
- An absence of binary companions to Wolf-Rayet stars in the Small Magellanic Cloud: implications for mass loss and black hole masses at low metallicity
- A spectroscopic multiplicity survey of Galactic Wolf-Rayet stars: II. The northern WNE sequence
- The B-type Binaries Characterisation Programme II. VFTS 291: A stripped star from a recent mass transfer phase
- Forming merging double compact objects with stable mass transfer
- X-Shooting ULLYSES: Massive Stars at low metallicity VIII. Stellar and wind parameters of newly revealed stripped stars in Be binaries
- Columbae: the recently stripped, pulsating core of a massive star
- A spectroscopic multiplicity survey of Galactic Wolf-Rayet stars. III. The northern late-type nitrogen-rich sample
- Observational predictions for Thorne-Żytkow objects
- Reverse Algols and hydrogen-rich Wolf-Rayet stars from very massive binaries
- Investigating 39 Galactic Wolf-Rayet stars with VLTI/GRAVITY: Uncovering A Long Period Binary Desert
- On the evolutionary nature of puffed-up stripped star binaries and their occurrence in stellar populations
- Hot subdwarf B stars with neutron star components II: Binary population synthesis
- Modelling stellar evolution in mass-transferring binaries and gravitational-wave progenitors with METISSE
- The spin rates of O stars in WR + O Magellanic Cloud binaries
- Analytic approximations for massive close post-mass transfer binary systems
- Development of convective envelopes in massive stars: Implications for gravitational wave sources
Cited by in corpus (6)
- Populations of evolved massive binary stars in the Small Magellanic Cloud I: Predictions from detailed evolution models
- A Be Star + He Star Binary as an Indicator of a Binary Mass Transfer Phase
- A constant upper luminosity limit of cool supergiant stars down to the extremely low metallicity of I Zw 18
- Carbon from massive binary-stripped stars over cosmic time: effect of metallicity
- Eruptive mass loss less than a year before the explosion of superluminous supernovae. II. A systematic search for pre-explosion eruptions with VLT/X-shooter
- The Stripped-Star Ultraviolet Magellanic Cloud Survey (SUMS): The UV Photometric Catalog and Stripped Star Candidate Selection