Upper Mass-Loss Limits and Clumping in the Intermediate and Outer Wind Regions of OB stars
arXiv:2108.11734 · doi:10.1051/0004-6361/202040116
Abstract
We probe the radial clumping stratification of OB stars in the intermediate and outer wind regions (r>~2 R*) to derive upper limits for mass-loss rates, and compare to current mass-loss implementation. Together with archival multi-wavelength data, our new far-infrared continuum observations for a sample of 25 OB stars (including 13 B Supergiants) uniquely constrain the clumping properties of the intermediate wind region. We derive the minimum radial stratification of the clumping factor through the stellar wind, fclmin(r), and the corresponding maximum mass-loss rate, Mdotmax, normalising clumping factors to the outermost wind region (clfar=1). The clumping degree for r>~2 R* decreases or stays constant with increasing radius for almost the whole sample. There is a dependence on luminosity class and spectral type at the intermediate region relative to the outer ones: O Supergiants (OSGs) present a factor 2 larger clumping factors than B Supergiants (BSGs). The maximum clumping of roughly 1/3 of the OB Supergiants occurs close to the wind base (r<~2 R*) and then decreases monotonically. This contrasts with the more frequent case where the lowermost clumping increases towards a maximum, and needs to be addressed by theoretical models. Additionally, the estimated Mdotmax for BSGs is at least one order of magnitude lower than theoretical values, whereas for OSGs our results and predictions agree within errors. Assuming values of clfar=4-9 from hydrodynamical models would imply a reduction of mass-loss rates included in stellar evolution models by a factor 2-3 for OSGs and by factors 6-200 for BSGs below the first bi-stability jump. This implies large reductions of mass-loss rates applied in evolution-models for BSGs, independently of the actual clumping properties of these winds, and a thorough re-investigation of BSG mass-loss rates and their effects on stellar evolution.
23 pages + 12 appendices pages, 18 figures, accepted in Astronomy & Astrophysics
References in corpus (20)
- The Gaia mission
- Modules for Experiments in Stellar Astrophysics (MESA)
- Mass loss from hot massive stars
- The surprising magnetic topology of tauSco: fossil remnant or dynamo output?
- Bright OB stars in the Galaxy - III. Constraints on the radial stratification of the clumping factor in hot star winds from a combined Halpha, IR and radio analysis
- Neglecting the porosity of hot-star winds can lead to underestimating mass-loss rates
- Bright OB stars in the Galaxy IV. Stellar and wind parameters of early to late B supergiants
- The evolution of rotating very massive stars with LMC composition
- New predictions for radiation-driven, steady-state mass-loss and wind-momentum from hot, massive stars. I. Method and first results
- Modeling the early evolution of massive OB stars with an experimental wind routine
- Theoretical wind clumping predictions of OB supergiants from line-driven instability simulations across the bi-stability jump
- Testing the predicted mass-loss bi-stability jump at radio wavelengths
- An XMM-Newton view of the young open cluster NGC 6231 -- I. The catalogue
- On the H Behaviour of Blue Supergiants: Rise and Fall over the Bi-stability Jump
- Hyper: Hybrid Photometry and Extraction Routine
- A JVLA survey of the high frequency radio emission of the massive magnetic B- and O-type stars
- e-MERLIN 21cm constraints on the mass-loss rates of OB stars in Cyg OB2
- Radio observations of candidate magnetic O stars
- Probing the early phases of high mass star formation with 6.7 GHz methanol masers
- Massive stars in the young cluster VVV CL074
Cited by in corpus (19)
- The R136 star cluster dissected with Hubble Space Telescope/STIS. III. The most massive stars and their clumped winds
- Theory and Diagnostics of Hot Star Mass Loss
- ALMA detection of CO rotational line emission in red supergiant stars of the massive young star cluster RSGC1 -- Determination of a new mass-loss rate prescription for red supergiants
- The effects of surface fossil magnetic fields on massive star evolution: IV. Grids of models at Solar, LMC, and SMC metallicities
- Clumping and X-Rays in cooler B supergiant stars
- 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
- The IACOB project XI. No increase of mass-loss rates over the bistability region
- Empirical mass-loss rates and clumping properties of O-type stars in the LMC
- Using Shell Models to Investigate Clumping in the WN4 Star HD 50896
- Theoretical wind clumping predictions from 2D LDI models of O-star winds at different metallicities
- Modeling the effects of clumpy winds in the high-energy light curves of γ-ray binaries
- Simulations of the line-driven instability in magnetic hot star winds
- To clump or not to clump The impact of wind inhomogeneities on the optical and NIR spectroscopic analysis of massive OB stars
- The IACOB project XIV. New clues on the location of the TAMS in the massive star domain
- Structure formation in O-type stars and Wolf-Rayet stars
- A multi-frequency, multi-epoch radio continuum study of the Arches cluster with the VLA
- X-Shooting ULLYSES: Massive stars at low metallicity XV. On the metallicity dependence of B-supergiant mass-loss rates
- Low-frequency spectra of neutron star + OB supergiant binaries: Does wind density drive persistent and flaring modes of accretion?
- ALMA measurements of mass loss and wind clumping in the massive stars of the Arches cluster