Predictions for mass-loss rates and terminal wind velocities of massive O-type stars
arXiv:1112.0944 · doi:10.1051/0004-6361/201015818
Abstract
Mass loss forms an important aspect of the evolution of massive stars, as well as for the enrichment of the surrounding ISM. Our goal is to predict accurate mass-loss rates and terminal wind velocities. These quantities can be compared to empirical values, thereby testing radiation-driven wind models. One specific issue is that of the "weak-wind problem", where empirically derived mass-loss rates fall orders of magnitude short of predicted values. We employ an established Monte Carlo model and a recently suggested new line acceleration formalism to solve the wind dynamics consistently. We provide a new grid of mass-loss rates and terminal wind velocities of O stars, and compare the values to empirical results. Our models fail to provide mass-loss rates for main-sequence stars below a luminosity of log(L/Lsun) = 5.2, where we run into a fundamental limit. At luminosities below this critical value there is insufficient momentum transferred in the region below the sonic point to kick-start the acceleration. This problem occurs at the location of the onset of the weak-wind problem. For O dwarfs, the boundary between being able to start a wind, and failing to do so, is at spectral type O6/O6.5. The direct cause of this failure is a combination of the lower luminosity and a lack of Fe V lines at the wind base. This might indicate that another mechanism is required to provide the necessary driving to initiate the wind. For stars more luminous than log(L/Lsun) = 5.2, our new mass-loss rates are in excellent agreement with the mass-loss prescription by Vink et al. 2000. This implies that the main assumption entering the method of the Vink et al. prescriptions - i.e. that the momentum equation is not explicitly solved for - does not compromise the reliability of the Vink et al. results for this part of parameter space (Abridged).
10 pages, 10 figures, Astronomy & Astrophysics (in press)
References in corpus (5)
- Mass loss from hot massive stars
- The nucleosynthesis of Al26 and Fe60 in solar metallicity stars extending in mass from 11 to 120 Msun: the hydrostatic and explosive contributions
- The empirical metallicity dependence of the mass-loss rate of O- and early B-type stars
- Implications of the metallicity dependence of Wolf-Rayet winds
- A consistent solution for the velocity field and mass-loss rate of massive stars
Cited by in corpus (118)
- Mass Loss: Its Effect on the Evolution and Fate of High-Mass Stars
- PARSEC evolutionary tracks of massive stars up to at metallicities 0.00010.04
- Assisted Inspirals of Stellar Mass Black Holes Embedded in AGN Disks: Solving the "Final AU Problem"
- Very massive stars, pair-instability supernovae and intermediate-mass black holes with the SEVN code
- Merging black hole binaries: the effects of progenitor's metallicity, mass-loss rate and Eddington factor
- The MiMeS survey of magnetism in massive stars: Magnetic analysis of the O-type stars
- Evolution of massive population III stars with rotation and magnetic fields
- Concurrent formation of supermassive stars and globular clusters: implications for early self-enrichment
- The evolution of rotating very massive stars with LMC composition
- Low-metallicity massive single stars with rotation. Evolutionary models applicable to I Zwicky 18
- Catalogue of particle-accelerating colliding-wind binaries
- Theory and Diagnostics of Hot Star Mass Loss
- The R136 star cluster dissected with Hubble Space Telescope/STIS. II. Physical properties of the most massive stars in R136
- Winds from stripped low-mass Helium stars and Wolf-Rayet stars
- Coupling hydrodynamics with comoving frame radiative transfer: I. A unified approach for OB and WR stars
- Massive stars at low metallicity: Evolution and surface abundances of O dwarfs in the SMC
- Monte Carlo Radiative Transfer
- Metallicity-dependent wind parameter predictions for OB stars
- The VLT-FLAMES Tarantula Survey XXIV. Stellar properties of the O-type giants and supergiants in 30 Doradus
- Feedback from massive stars at low metallicities: MUSE observations of N44 and N180 in the Large Magellanic Cloud
- Driving classical Wolf-Rayet winds: A Γ- and Z-dependent mass-loss
- The effects of surface fossil magnetic fields on massive star evolution: I. Magnetic field evolution, mass-loss quenching and magnetic braking
- Two bi-stability jumps in theoretical wind models for massive stars and the implications for Luminous Blue Variable supernovae
- Very Massive Stars: a metallicity-dependent upper-mass limit, slow winds, and the self-enrichment of Globular Clusters
- Which feedback mechanisms dominate in the high-pressure environment of the Central Molecular Zone?
- Rotating massive O stars with non-spherical 2D winds
- The VLT-FLAMES Tarantula Survey XXVI: Properties of the O-dwarf population in 30 Doradus
- No breakdown of the radiatively-driven wind theory in low-metallicity environments
- The VLT-FLAMES Tarantula Survey. XIII: On the nature of O Vz stars in 30 Doradus
- The Geometry and Dynamical Role of Stellar Wind Bubbles in Photoionised HII Regions
- Long term variability of Cygnus X-1: VII. Orbital variability of the focussed wind in Cyg X-1 / HDE 226868 system
- The VLT-FLAMES Tarantula Survey XXV. Surface nitrogen abundances of O-type giants and supergiants
- X-ray emission from massive stars in Cyg OB2
- The properties of ten O-type stars in the low-metallicity galaxies IC 1613, WLM and NGC 3109
- A spectroscopic investigation of the O-type star population in four Cygnus OB associations. II. Determination of the fundamental parameters
- Fast & slow winds from supergiants and Luminous Blue Variables
- Chandra X-Ray Spectroscopy of the Focused Wind in the Cygnus X-1 System. II. The Nondip Spectrum in the Low/Hard State - Modulations with Orbital Phase
- Clues on the Origin and Evolution of Massive Contact Binaries: Atmosphere Analysis of VFTS 352
- Polarization of Fast Radio Bursts: radiation mechanisms and propagation effects
- X-Shooting ULLYSES: Massive stars at low metallicity. III. Terminal wind speeds of ULLYSES massive stars
- Faraday Rotation Measure Variations of Repeating Fast Radio Burst Sources
- HESS J1640-465 - an exceptionally luminous TeV gamma-ray supernova remnant
- Chandra X-ray spectroscopy of the focused wind in the Cygnus X-1 system III. Dipping in the low/hard state
- Three-dimensional orbits of the triple-O stellar system HD 150136
- On the H Behaviour of Blue Supergiants: Rise and Fall over the Bi-stability Jump
- Massive pre-main sequence stars in M17
- The X-ray catalog of spectroscopically identified Galactic O stars: Investigating the dependence of X-ray luminosity on stellar and wind parameters
- Star formation around mid-infrared bubble N37: Evidence of cloud-cloud collision
- Timing the main-sequence-star binary pulsar J1740-3052
- The effects of the stellar wind and orbital motion on the jets of high-mass microquasars
- The X-ray light curve of the massive colliding wind Wolf-Rayet + O binary WR21a
- The effects of surface fossil magnetic fields on massive star evolution: IV. Grids of models at Solar, LMC, and SMC metallicities
- FEEDBACK from the NGC7538 HII region
- Chemical abundances of fast-rotating massive stars. I. Description of the methods and individual results
- Mass-loss rates of Very Massive Stars
- Observational signatures of past mass-exchange episodes in massive binaries: The case of HD 149 404
- Mass-loss predictions for evolved very metal-poor massive stars
- The pulsating magnetosphere of the extremely slowly rotating magnetic Cep star CMa
- The 2.35 year itch of Cyg OB2 #9. II. Radio monitoring
- An Updated Formalism For Line-Driven Radiative Acceleration and Implications for Stellar Mass Loss
- A model for the non-thermal emission of the very massive colliding-wind binary HD 93129A
- A radio-map of the colliding winds in the very massive binary system HD 93129A
- Effect of mass loss due to stellar winds on the formation of supermassive black hole seeds in dense nuclear star clusters
- A dynamical and radiation semi-analytical model of pulsar-star colliding winds along the orbit: Application to LS 5039
- Wind properties of Milky Way and SMC massive stars: empirical Z dependence from CMFGEN models
- On the Origin of Wind Line Variability in O Stars
- Long gamma-ray burst rate at very high redshift
- Is the bowshock of the runaway massive star HD 195592 a Fermi source?
- Probing the weak wind phenomenon in Galactic O-type giants
- Demonstration of a novel method for measuring mass-loss rates for massive stars
- Revealing Efficient Dust-Formation at Low Metallicity in Extragalactic Carbon-Rich Wolf-Rayet Binaries
- 3D RMHD simulations of jet-wind interactions in High Mass X-ray Binaries
- X-Shooting ULLYSES: Massive Stars at low metallicity IX: Empirical constraints on mass-loss rates and clumping parameters for OB supergiants in the Large Magellanic Cloud
- Multi-zone non-thermal radiative model for stellar bowshocks
- X-ray diagnostics of massive star winds
- e-MERLIN 21cm constraints on the mass-loss rates of OB stars in Cyg OB2
- Clumpy stellar winds and high-energy emission in high-mass binaries hosting a young pulsar
- Mass loss and stellar superwinds
- The long period eccentric orbit of the particle accelerator HD167971 revealed by long baseline interferometry
- X-ray and optical spectroscopy of the massive young open cluster IC1805
- Apsidal motion in the massive binary HD152248
- Supercritical colliding wind binaries
- Apsidal motion in massive eccentric binaries: The case of CPD-417742, and HD 152218 revisited
- Observational signatures of past mass-exchange episodes in massive binaries: The case of LSS 3074
- A Report on the X-ray Properties of the tau Sco Like Stars
- Extended Red Objects and Stellar Wind Bow Shocks in the Carina Nebula
- X-Ray Observations of the W51 Complex with Suzaku
- High-sensitivity radio study of the non-thermal stellar bow shock EB27
- Cool, Luminous, and Highly Variable Stars in the Magellanic Clouds. II: Spectroscopic and Environmental Analysis of Thorne-Żytkow Object and Super-AGB Star Candidates
- A wind-blown bubble in the Central Molecular Zone cloud G0.253+0.016
- A model for high-mass microquasar jets under the influence of a strong stellar wind
- Apsidal motion in massive eccentric binaries in NGC 6231: The case of HD 152219
- Resolving the dynamical mass tension of the massive binary 9 Sagittarii
- Long-term XMM-Newton investigation of two particle-accelerating colliding-wind binaries in NGC6604: HD168112 and HD167971
- Long-term soft and hard X-ray investigation of the colliding wind WN+O binary WR 25
- Nonthermal emission from high-mass microquasar jets affected by orbital motion
- Probing the non-thermal physics of stellar bow shocks using radio observations
- Long-Wavelength, Free-Free Spectral Energy Distributions from Porous Stellar Winds
- Zeta Oph and the weak-wind problem
- Fundamental parameters of massive stars in multiple systems: The cases of HD17505A and HD206267A
- Hints about the multiplicity of WR 133 based on multiepoch radio observations
- Investigation of the WR 11 field at decimeter wavelengths
- Magnetic Archaeology of Early-Type Stellar Dynamos
- Moving inhomogeneous envelopes of stars
- LIFELINE: The program for the simulation of the X-ray line profiles in massive colliding wind binaries
- New insight into the massive eccentric binary HD 165052: self-consistent orbital solution, apsidal motion, and fundamental parameters
- Relativistic stellar jets: dynamics and non-thermal radiation
- An X-ray Study of Two B+B Binaries: AH Cep and CW Cep
- Analytical Solutions for Radiation-Driven Winds in Massive Stars. I: The Fast Regime
- Unraveling the nature of a deeply embedded Wolf-Rayet star WR 121a
- Using numerical models of bow shocks to investigate the circumstellar medium of massive stars
- EWOCS-IV: 1Ms ACIS Chandra observation of the supergiant B[e] star Wd1-9
- The wind properties of O-type stars at sub-SMC metallicity
- Radio emission during the formation of stellar clusters in M33
- Radio study of the colliding wind binary HD93129A near periastron and its surroundings
- Investigation of the nature of the wind interaction in HD93205 based on multi-epoch X-ray observations
- The feedback of massive stars on interstellar astrochemical processes
- Relativistic hydrodynamical simulations of the effects of the stellar wind and the orbit on high-mass microquasar jets