Probing the weak wind phenomenon in Galactic O-type giants
Abstract
Analyses of Galactic late O dwarfs (O8-O9.5V) raised the `weak wind problem': spectroscopic mass loss rates () are up to two orders of magnitude lower than the theoretical values. We investigated the stellar and wind properties of Galactic late O giants (O8-O9.5III). We performed a spectroscopic analysis of nine O8-O9.5III stars in the ultraviolet (UV) and optical regions using the model atmosphere code CMFGEN. From the UV region, we found overall. This is lower by dex than the predicted values based on the (global) conservation of energy in the wind. The mass-loss rates predicted from first principles, based on the moving reversing layer theory, agree better with our findings, but it fails to match the spectroscopic for the most luminous OB stars. The region of is critical for both sets of predictions in comparison with the spectroscopic mass-loss rates. CMFGEN models with the predicted (the former one) fail to reproduce the UV wind lines for all the stars of our sample. We reproduce the observed H profiles of four objects with our derived from the UV. Hence, low values (weak winds) are favored to fit the observations (UV + optical), but discrepancies between the UV and H diagnostics remain for some objects. Our results indicate weak winds beyond the O8-9.5V class, since the region of is indeed critical to the weak wind phenomenon. Since O8-O9.5III stars are more evolved than O8-9.5V, evolutionary effects do not seem to play a role in the onset of the weak wind phenomenon. These findings support that the (for low luminosity O stars) in use in the majority of modern stellar evolution codes must be severely overestimated up to the end of the H-burning phase.
Cite
@article{arxiv.1903.07937,
title = {Probing the weak wind phenomenon in Galactic O-type giants},
author = {E. S. G. de Almeida and W. L. F. Marcolino and J. -C. Bouret and C. B. Pereira},
journal= {arXiv preprint arXiv:1903.07937},
year = {2019}
}
Comments
44 pages, 23 figures, accepted for publication in Astronomy & Astrophysics on 12/02/2019. Abstract shortened to fit within arXiv character limit. Final version after language editing