The Eddington factor as the key to understand the winds of the most massive stars. Evidence for a Gamma-dependence of Wolf-Rayet type mass loss
arXiv:1106.5361 · doi:10.1051/0004-6361/201116701
Abstract
The most massive stars are thought to be hydrogen-rich Wolf-Rayet stars of late spectral subtype (WNh stars). In previous theoretical studies the enhanced mass loss of these stars has been attributed to their proximity to the Eddington limit. Here we investigate observed trends in the mass-loss properties of such young, very massive stars. We derive theoretical mass-luminosity relations for very massive stars, based on a large grid of stellar structure models. Using these relations, we estimate Eddington factors for a sample of stars, under different assumptions of their evolutionary status. We evaluate the resulting mass-loss relations, and compare them with theoretical predictions. We find observational evidence that the mass loss in the WR regime is dominated by the Eddington parameter Gamma_e, which has important consequences for the way we understand Wolf-Rayet stars and their mass loss. In addition, we derive wind masses that support the picture that the WNh stars in young stellar clusters are very massive, hydrogen-burning stars. Our findings suggest that the proximity to the Eddington limit is the physical reason for the onset of Wolf-Rayet type mass loss. This means that, e.g. in stellar evolution models, the Wolf-Rayet stage should be identified by large Eddington parameters, instead of a helium-enriched surface composition. The latter is most likely only a consequence of strong mass loss, in combination with internal mixing. For very massive stars, the enhanced Gamma-dependent mass loss is responsible for the formation of late WNh subtypes with high hydrogen surface abundances, partly close to solar. Because mass loss dominates the evolution of very massive stars, we expect a strong impact of this effect on their end products, in particular on the potential formation of black holes, and Gamma-Ray Bursts, as well as the observed upper mass limit of stars.
References in corpus (18)
- Physical Properties of Wolf-Rayet Stars
- Rotating Massive Main-Sequence Stars I: Grids of Evolutionary Models and Isochrones
- The R136 star cluster hosts several stars whose individual masses greatly exceed the accepted 150 Msun stellar mass limit
- The Galactic WN stars: Spectral analyses with line-blanketed model atmospheres versus stellar evolution models with and without rotation
- The VLT-FLAMES Tarantula Survey I: Introduction and observational overview
- Mass loss from late-type WN stars and its Z-dependence: very massive stars approaching the Eddington limit
- The most massive stars in the Arches cluster
- A strong case for fast stellar rotation at very low metallicities
- Wind modelling of very massive stars up to 300 solar masses
- Chemical Abundances of Luminous Cool Stars in the Galactic Center from High-Resolution Infrared Spectroscopy
- On the evolution and fate of supermassive stars
- A Spectroscopic Survey of WNL Stars in the LMC: General Properties and Binary Status
- The Arches Cluster Mass Function
- The VLT-FLAMES Tarantula Survey III: A very massive star in apparent isolation from the massive cluster R136
- A consistent solution for the velocity field and mass-loss rate of massive stars
- Properties of WNh stars in the Small Magellanic Cloud: evidence for homogeneous evolution
- Convective envelopes in rotating OB stars
- A first orbital solution for the very massive 30 Dor main-sequence WN6h+O binary R145
Cited by in corpus (123)
- MESA Isochrones and Stellar Tracks (MIST). I: Solar-Scaled Models
- Mass Loss: Its Effect on the Evolution and Fate of High-Mass Stars
- Pre-Supernova Evolution of Massive Single and Binary Stars
- Merging black hole binaries: the effects of progenitor's metallicity, mass-loss rate and Eddington factor
- An excess of massive stars in the local 30 Doradus starburst
- Strongly star forming galaxies in the local Universe with nebular He II 4686 emission
- Evolution and fate of very massive stars
- The Wolf-Rayet stars in the Large Magellanic Cloud: A comprehensive analysis of the WN class
- Luminous Blue Variables are Antisocial: Their Isolation Implies that they are Kicked Mass Gainers in Binary Evolution
- Stellar envelope inflation near the Eddington limit. Implications for the radii of Wolf-Rayet stars and luminous blue variables
- The evolution of rotating very massive stars with LMC composition
- Super-AGB Stars and their role as Electron Capture Supernova progenitors
- Massive main sequence stars evolving at the Eddington limit
- The spectroscopic Hertzsprung-Russell diagram
- On the nature of massive helium star winds and Wolf-Rayet-type mass loss
- The VLT-FLAMES Tarantula Survey XVII. Physical and wind properties of massive stars at the top of the main sequence
- Low-metallicity massive single stars with rotation. Evolutionary models applicable to I Zwicky 18
- Stellar Evolution in AGN Disks
- The Galactic WC and WO stars: The impact of revised distances from Gaia DR2 and their role as massive black hole progenitors
- Wolf-Rayet stars in the Small Magellanic Cloud: I. Analysis of the single WN stars
- The Galactic WN stars revisited. Impact of Gaia distances on fundamental stellar parameters
- The R136 star cluster dissected with Hubble Space Telescope/STIS. II. Physical properties of the most massive stars in R136
- The impact of electron-capture supernovae on merging double neutron stars
- Why binary interaction does not necessarily dominate the formation of Wolf-Rayet stars at low metallicity
- Properties of OB star-black hole systems derived from detailed binary evolution models
- Winds from stripped low-mass Helium stars and Wolf-Rayet stars
- Wolf-Rayet stars in the Small Magellanic Cloud: II. Analysis of the binaries
- Coupling hydrodynamics with comoving frame radiative transfer: I. A unified approach for OB and WR stars
- Host galaxies of merging compact objects: mass, star formation rate, metallicity and colours
- Non-Thermal Insights on Mass and Energy Flows Through the Galactic Centre and into the Fermi Bubbles
- Massive donors in interacting binaries: effect of metallicity
- The VLT-FLAMES Tarantula Survey XXIV. Stellar properties of the O-type giants and supergiants in 30 Doradus
- Detailed models of interacting short-period massive binary stars
- The transition mass-loss rate: Calibrating the role of line-driven winds in massive star evolution
- Formation channels of single and binary stellar-mass black holes
- Driving classical Wolf-Rayet winds: A Γ- and Z-dependent mass-loss
- Nebular spectra of pair-instability supernovae
- Partial-envelope stripping and nuclear-timescale mass transfer from evolved supergiants at low metallicity
- Supernovae Ib and Ic from the explosion of helium stars
- Two bi-stability jumps in theoretical wind models for massive stars and the implications for Luminous Blue Variable supernovae
- Constraining the fraction of binary black holes formed in isolation and young star clusters with gravitational-wave data
- Very Massive Stars: a metallicity-dependent upper-mass limit, slow winds, and the self-enrichment of Globular Clusters
- A VLT/FLAMES survey for massive binaries in Westerlund 1. IV. Wd1-5 - binary product and a pre-supernova companion for the magnetar CXOU J1647-45?
- The VLT-FLAMES Tarantula Survey XXVI: Properties of the O-dwarf population in 30 Doradus
- Feedback by massive stars and the emergence of superbubbles II. X-ray properties
- Narrow He II emission in star-forming galaxies at low metallicity. Stellar wind emission from a population of Very Massive Stars
- Wolf-Rayet stars in the Small Magellanic Cloud as testbed for massive star evolution
- Very massive stars and Nitrogen emitting galaxies
- Gemini/GNIRS infrared spectroscopy of the Wolf-Rayet stellar wind in Cygnus X-3
- Wind-envelope interaction as the origin of the slow cyclic brightness variations of luminous blue variables
- Mass loss and the Eddington parameter: a new mass-loss recipe for hot and massive stars
- The Tarantula Massive Binary Monitoring. IV. Double-lined photometric binaries
- Light-travel-time diagnostics in early Supernova spectra: substantial mass loss of the IIb progenitor of SN 2013cu through a superwind
- Compact Binary Coalescences: Astrophysical Processes and Lessons Learned
- On the optically-thick winds of Wolf-Rayet stars
- Revisiting the archetypical wind accretor Vela X-1 in depth -- A case study of a well-known X-ray binary and the limits of our knowledge
- Very Massive Stars and Pair-Instability Supernovae: Mass-loss Framework for low Metallicity
- Evidence for quasi-chemically homogeneous evolution of massive stars up to solar metallicity
- Pair-Instability Supernova Simulations: Progenitor Evolution, Explosion, and Light Curves
- A massive helium star with a sufficiently strong magnetic field to form a magnetar
- The temperature dependency of Wolf-Rayet-type mass loss: An exploratory study for winds launched by the hot iron bump
- Stellar mass-loss near the Eddington limit. Tracing the sub-photospheric layers of classical Wolf-Rayet stars
- Evolution of Wolf-Rayet stars as black hole progenitors
- Weighing Melnick 34: the most massive binary system known
- Rotating Wolf-Rayet stars in a post RSG/LBV phase. An evolutionary channel towards long-duration GRBs?
- Spectroscopic evolution of very massive stars at Z = 1/2.5 Zsun
- The Evolution and Physical Parameters of WN3/O3s: a New Type of Wolf-Rayet Star
- Wolf-Rayet spin at low metallicity and its implication for Black Hole formation channels
- Evolution of massive stellar triples and implications for compact object binary formation
- B fields in OB stars (BOB): Detection of a magnetic field in the He-strong star CPD-57° 3509
- Physics and evolution of the most massive stars in 30 Dor. Mass loss, envelope inflation, and a variable upper stellar mass limit
- The host galaxies of double compact objects across cosmic time
- One of the most massive stars in the Galaxy may have formed in isolation
- New mass-loss rates of B supergiants from global wind models
- The isolation of Luminous Blue Variables: On subdividing the sample
- The Shortest-period Wolf-Rayet binary in the Small Magellanic Cloud: Part of a high-order multiple system
- The Wolf-Rayet stars in M31: I. Analysis of the late-type WN stars
- 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
- Inferring the presence of very massive stars in local star-forming regions
- Stripped-Envelope Stars in Different Metallicity Environments I. Evolutionary Phases, Classification and Populations
- The Tarantula Massive Binary Monitoring V. R 144: a wind-eclipsing binary with a total mass > 140 Msun
- 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
- On the nature of WO stars: a quantitative analysis of the WO3 star DR1 in IC 1613
- X-Shooting ULLYSES: Massive Stars at low metallicity VIII. Stellar and wind parameters of newly revealed stripped stars in Be binaries
- Modeling overcontact binaries, I. The effect of tidal deformation
- The First Dynamical Mass Determination of a Nitrogen-rich Wolf-Rayet Star using a Combined Visual and Spectroscopic Orbit
- Modeling contact binaries, II. The effect of energy transfer
- Finding Black Holes with Black Boxes -- Using Machine Learning to Identify Globular Clusters with Black Hole Subsystems
- Exploring the borderline between stable mass transfer and mergers in close binary evolution
- Reverse Algols and hydrogen-rich Wolf-Rayet stars from very massive binaries
- Mass loss and stellar superwinds
- The Discovery of a Very Massive Star in W49
- The Wolf-Rayet binaries of the nitrogen sequence in the Large Magellanic Cloud: spectroscopy, orbital analysis, formation, and evolution
- Empirical properties of Very Massive Stars
- On the Eddington limit and WR Stars
- Helium and Nitrogen Enrichment in Massive Main Sequence Stars: Mechanisms and Implications for the Origin of WNL Stars
- The Massive Stellar Population of W49: A Spectroscopic Survey
- Melnick 33Na: a very massive colliding wind binary system in 30 Doradus
- The hydrogen clock to infer the upper stellar mass
- Discovery of a new Wolf-Rayet star and a candidate star cluster in the Large Magellanic Cloud with Spitzer
- Evolution of rotating massive stars adopting a newer, self-consistent wind prescription at SMC metallicity
- Compact Objects in close orbits as Gravitational Wave Sources: Formation Scenarios and Properties
- The Neutrino Signal From Pair Instability Supernovae
- First VLT/X-shooter spectroscopy of early-type stars outside the Local Group
- BAT99 126: A multiple Wolf-Rayet system in the Large Magellanic Cloud with a massive near-contact binary
- BAT99-9 -- a WC4 Wolf-Rayet star with nitrogen emission: Evidence for binary evolution?
- Probing the Dragonfish star-forming complex: the ionizing population of the young massive cluster Mercer 30
- A New Transition Wolf-Rayet WN/C Star in the Milky Way
- Surface chemical composition of single WNh stars
- Exploring extreme brightness variations in blue supergiant MACHO 80.7443.1718: Evidence for companion-driven enhanced mass loss
- Stability and pulsation of the first dark stars
- X-ray emission from helium star+black hole binaries as probes of tidally induced spin-up of second-born black holes
- Enhanced Mass Loss of Very Massive Stars: Impact on the Evolution, Binary Processes, and Remnant Mass Spectrum
- Weighing stars from birth to death: mass determination methods across the HRD
- The drastic impact of Eddington-limit induced mass ejections on massive star populations
- Metal-poor single Wolf-Rayet stars: The interplay of optically thick winds and rotation
- Evolution of stars with 60 and 200 Msun: predictions for WNh stars in the Milky Way
- Dynamically consistent analysis of Galactic WN4b stars
- Testing Evolutionary Models with Red Supergiant and Wolf-Rayet Populations
- Adiabatic Mass Loss In Binary Stars. VI. Massive Helium Binary Stars
- Supernovae in colliding-wind binaries: observational signatures in the first year
- LAMOST J040901.83+329355.6 -- a new Galactic star with Wolf--Rayet characteristics on a post-AGB to CSPN transitional stage
- Kinematics of Wolf-Rayet Stars in the LMC: Clues to Subtype Origins