X-ray, UV and optical analysis of supergiants: $\epsilon$ Ori
Abstract
We present a multi-wavelength (X-ray to optical) analysis, based on non-local thermodynamic equilibrium photospheric+wind models, of the B0 Ia-supergiant: ~Ori. The aim is to test the consistency of physical parameters, such as the mass-loss rate and CNO abundances, derived from different spectral bands. The derived mass-loss rate is 1.610 M yr where is the volume filling factor. However, the S IV 1062,1073 profiles are too strong in the models; to fit the observed profiles it is necessary to use 0.01. This value is a factor of 5 to 10 lower than inferred from other diagnostics, and implies M yr. The discrepancy could be related to porosity-vorosity effects or a problem with the ionization of sulfur in the wind. To fit the UV profiles of N V and O VI it was necessary to include emission from an interclump medium with a density contrast () of 100. X-ray emission in H-He like and Fe L lines was modeled using four plasma components located within the wind. We derive plasma temperatures from to K, with lower temperatures starting in the outer regions (R3-6 R), and a hot component starting closer to the star (R2.9 R). From X-ray line profiles we infer M yr. The X-ray spectrum (0.1 kev) yields an X-ray luminosity , consistent with the superion line profiles. X-ray abundances are in agreement with those derived from the UV and optical analysis: Ori is slightly enhanced in nitrogen and depleted in carbon and oxygen, evidence for CNO processed material.
Keywords
Cite
@article{arxiv.1511.09365,
title = {X-ray, UV and optical analysis of supergiants: $\epsilon$ Ori},
author = {Raul E. Puebla and D. John Hillier and Janos Zsargó and David H. Cohen and Maurice A. Leutenegger},
journal= {arXiv preprint arXiv:1511.09365},
year = {2015}
}
Comments
33 pages, 25 figures. Accepted for publication in MNRAS