A new massive double-lined spectroscopic binary system: The Wolf-Rayet star WR 68a

Double-lined spectroscopic binary systems, containing a Wolf-Rayet and a massive O-type star, are key objects for the study of massive star evolution because these kinds of systems allow the determination of fundamental astrophysical parameters of their components. We have performed spectroscopic ob...

Full description

Bibliographic Details
Authors: Collado, A., Gamen, Roberto Claudio, Barbá, Rodolfo Héctor, Morrell, Nidia Irene
Format: article
Status:Published version
Publication Date:2015
Country:Argentina
Institution:Universidad Nacional de La Plata
Repository:SEDICI (UNLP)
Language:English
OAI Identifier:oai:sedici.unlp.edu.ar:10915/86395
Online Access:http://sedici.unlp.edu.ar/handle/10915/86395
Access Level:Open access
Keyword:Ciencias Astronómicas
binaries: spectroscopic
stars: fundamental parameters
stars: individual: WR 68a
stars: Wolf-Rayet
Description
Summary:Double-lined spectroscopic binary systems, containing a Wolf-Rayet and a massive O-type star, are key objects for the study of massive star evolution because these kinds of systems allow the determination of fundamental astrophysical parameters of their components. We have performed spectroscopic observations of the star WR 68a as part of a dedicated monitoring program of WR stars to discover new binary systems. We identified spectral lines of the two components of the system and disentangled the spectra. We measured the radial velocities in the separated spectra and determined the orbital solution. We discovered that WR 68a is a double-lined spectroscopic binary with an orbital period of 5.2207 days, very small or null eccentricity, and inclination ranging between 75 and 85 deg. We classified the binary components as WN6 and O5.5-6. The WN star is less massive than the O-type star with minimum masses of 15 ± 5 M<sub>⊙</sub> and 30 ± 4 M<sub>⊙</sub>, respectively. The equivalent width of the He II λ4686 emission line shows variations with the orbital phase, presenting a minimum when the WN star is in front of the system. The light curve constructed from available photometric data presents minima in both conjunctions of the system.