Demonstration of a novel method for measuring mass-loss rates for massive stars
arXiv:1803.02794 · doi:10.3847/1538-4357/aab3e0
Abstract
The rate at which massive stars eject mass in stellar winds significantly influences their evolutionary path. Cosmic rates of nucleosynthesis, explosive stellar phenomena, and compact object genesis depend on this poorly known facet of stellar evolution. We employ an unexploited observational technique for measuring the mass-loss rates of O- and early-B stars. Our approach, which has no adjustable parameters, uses the principle of pressure equilibrium between the stellar wind and the ambient interstellar medium for a high-velocity star generating an infrared bowshock nebula. Results for twenty bowshock-generating stars show good agreement with two sets of theoretical predictions for O5--O9.5 main-sequence stars, yielding 1.310 to 210 solar masses per year. Although values derived for this sample are smaller than theoretical expectations by a factor of about two, this discrepancy is greatly reduced compared to canonical mass-loss methods. Bowshock-derived mass-loss rates are factors of ten smaller than H-based measurements (uncorrected for clumping) for similar stellar types and are nearly an order of magnitude larger than P and some other UV absorption-line-based diagnostics. Ambient interstellar densities of at least several cm appear to be required for formation of a prominent infrared bowshock nebula. measurements for early-B stars are not yet compelling owing to the small number in our sample and the lack of clear theoretical predictions in the regime of lower stellar luminosities. These results may constitute a partial resolution of the extant "weak-wind problem" for late-O stars. The technique shows promise for determining mass-loss rates in the weak-wind regime.
accepted for publication in the Astrophysical Journal
References in corpus (20)
- The Gaia mission
- Binary interaction dominates the evolution of massive stars
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- Mass loss from hot massive stars
- The empirical metallicity dependence of the mass-loss rate of O- and early B-type stars
- Toward Complete Statistics of Massive Binary Stars: Penultimate Results from the Cygnus OB2 Radial Velocity Survey
- 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
- Shell-shocked diffusion model for the light curve of SN2006gy
- The impact of mass-loss on the evolution and pre-supernova properties of red supergiants
- A comprehensive search for stellar bowshock nebulae in the Milky Way: a catalog of 709 mid-infrared selected candidates
- Interstellar Weather Vanes: GLIMPSE Mid-Infrared Stellar-Wind Bowshocks in M17 and RCW49
- E-BOSS: An Extensive stellar BOw Shock Survey. II. Catalogue second release
- Rotating massive O stars with non-spherical 2D winds
- Infrared Photometric Properties of 709 Candidate Stellar Bowshock Nebulae
- A Catalog of New Spectroscopically Confirmed Massive OB Stars in Carina
- The Long Period, Massive Binaries HD 37366 and HD 54662: Potential Targets for Long Baseline Optical Interferometry
- Extended Red Objects and Stellar Wind Bow Shocks in the Carina Nebula
- Mass loss rates from mid-IR excesses in LMC and SMC O stars
- Instability, finite amplitude pulsation and mass-loss in models of massive OB-type stars
Cited by in corpus (14)
- Massive runaways and walkaway stars
- The Milky Way Project Second Data Release: Bubbles and Bow Shocks
- Wind nebulae and supernova remnants of very massive stars
- Bow shocks, bow waves, and dust waves. I. Strong coupling limit
- Propulsion of Spacecrafts to Relativistic Speeds Using Natural Astrophysical Sources
- Multi-zone non-thermal radiative model for stellar bowshocks
- Bow shocks, bow waves, and dust waves. III. Diagnostics
- Bow-shocks, nova shells, disc winds and tilted discs: The Nova-Like V341 Ara Has It All
- High-sensitivity radio study of the non-thermal stellar bow shock EB27
- Polarization simulations of stellar wind bow shock nebulae. II. The case of dust scattering
- Three generations of stars: a possible case of triggered star formation
- Modeling the H Emission Surrounding Spica using the Lyman Continuum from a Gravity-darkened Central Star
- The role of wind driving in OB star bow nebulae
- Kinematics of the Central Stars Powering Bowshock Nebulae and the Large Multiplicity Fraction of Runaway OB Stars