English

Study of Eclipsing Binary and Multiple Systems in OB Associations V: MQ Cen in Crux OB1

Solar and Stellar Astrophysics 2019-10-02 v1

Abstract

The early-type massive binary MQ Cen (Porb_{orb}=3.7 d) has been investigated by means of high-resolution (R48000R\sim48\,000) spectral analysis and multi-band (Johnson BVRIBVRI and Str\"{o}mgren vbyvby) light curve modeling. The physical parameters of the components have been found to be M1=4.26±0.10M_1= 4.26\pm0.10 M_{\odot}, R1=3.72±0.05R_1= 3.72\pm0.05 R_{\odot}, Teff1=16600±520T_{\rm eff1}=16\,600\pm520 K, and M2=5.14±0.09M_2= 5.14\pm0.09 M_{\odot}, R2=7.32±0.03R_2= 7.32\pm0.03 R_{\odot}, Teff2=15000±500T_{\rm eff2}=15\,000\pm500 K for the primary and secondary, respectively. The orbital inclination is i=87.0±0.2i=87.0\pm0.2 deg. The distance to MQ Cen has been derived to be d=2460±310d=2\,460\pm310 pc which locates it in the Crux OB1 association. However, the age of MQ~Cen (70\sim70 Myr) is higher than the one reported for the Crux OB1 association (\sim6 Myr). The derived masses are implying a spectral type of B5 for the primary and B4 for the secondary component. Nevertheless, the secondary component, which is more massive, appears to be cooler than the primary component: It has completed its lifetime on the main-sequence and it is now positioned at the turn-off point of the giant branch, meanwhile the less massive primary component is still staying on the main-sequence.

Keywords

Cite

@article{arxiv.1906.01913,
  title  = {Study of Eclipsing Binary and Multiple Systems in OB Associations V: MQ Cen in Crux OB1},
  author = {V. Bakis and Z. Mikulasek and J. Janik and M. Zejda and E. Tunc and C. Nitschelm and S. Bilir and J. Liska and H. Bakis},
  journal= {arXiv preprint arXiv:1906.01913},
  year   = {2019}
}

Comments

14 pages, 7 figures and 4 tables, accepted for publication in Astrophysics and Space Science

R2 v1 2026-06-23T09:42:55.942Z