First empirical constraints on the low Hα mass-loss rates of magnetic O-stars
Abstract
A small subset of Galactic O-stars possess surface magnetic fields that alter the outflowing stellar wind by magnetically confining it. Key to the magnetic confinement is that it induces rotational modulation of spectral lines over the full EM domain; this allows us to infer basic quantities, e.g., mass-loss rate and magnetic geometry. Here, we present an empirical study of the Hα line in Galactic magnetic O-stars to constrain the mass fed from the stellar base into the magnetosphere, using realistic multi-dimensional magnetized wind models, and compare with theoretical predictions. Our results suggest that it may be reasonable to use mass-feeding rates from non-magnetic wind theory if the absolute mass-loss rate is scaled down according to the amount of wind material falling back upon the stellar surface. This provides then some empirical support to the proposal that such magnetic O-stars might evolve into heavy stellar-mass black holes (Petit et al. 2017).
- Publication:
-
High-mass X-ray Binaries: Illuminating the Passage from Massive Binaries to Merging Compact Objects
- Pub Date:
- December 2019
- DOI:
- 10.1017/S1743921318007597
- arXiv:
- arXiv:1811.00163
- Bibcode:
- 2019IAUS..346...45D
- Keywords:
-
- stars: massive;
- stars: magnetic field;
- stars: mass-loss;
- stars: winds;
- outflows;
- Astrophysics - Solar and Stellar Astrophysics
- E-Print:
- 4 pages, 3 figures, IAU Symposium 346 proceedings