Spectroscopic variability of two Oe stars
G. Rauw, T. Morel, Y. Naze, T. Eversberg, F. Alves, W. Arnold, T., Bergmann, N.G. Correia Viegas, R. Fahed, A. Fernando, J.N. Gonzalez-Perez,, L.F. Gouveia Carreira, A. Hempelmann, T. Hunger, J.H. Knapen, R. Leadbeater,, F. Marques Dias, M. Mittag, A.F.J. Moffat, N. Reinecke

TL;DR
This study analyzes 20 years of spectroscopic data of two Oe stars, revealing different disk behaviors and linking these to their distinct X-ray properties, with implications for understanding decretion disks in massive stars.
Contribution
It provides the first long-term spectroscopic comparison of two Oe stars, connecting disk dynamics to their X-ray emission characteristics, and challenges simple disk models for some stars.
Findings
HD60848's emission lines are consistent with a Keplerian disk.
HD45314 shows complex, asymmetric line profiles and variable behavior.
The different X-ray properties are linked to the complexity of the disk velocity fields.
Abstract
The Oe stars HD45314 and HD60848 have recently been found to exhibit very different X-ray properties: whilst HD60848 has an X-ray spectrum and emission level typical of most OB stars, HD45314 features a much harder and brighter X-ray emission, making it a so-called gamma Cas analogue. Monitoring the optical spectra could provide hints towards the origin of these very different behaviours. We analyse a large set of spectroscopic observations of HD45314 and HD60848, extending over 20 years. We further attempt to fit the H-alpha line profiles of both stars with a simple model of emission line formation in a Keplerian disk. Strong variations in the strengths of the H-alpha, H-beta, and He I 5876 emission lines are observed for both stars. In the case of HD60848, we find a time lag between the variations in the equivalent widths of these lines. The emission lines are double peaked with…
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