Algol is a triple stellar system consisting of a close semidetached binary orbited by a third object. Due to the disputed spatial orientation of the close pair, the third body perturbation of this pair is a subject of much research. In this study, we determine the spatial orientation of the close pair orbital plane using the CHARA Array, a six-element optical/IR interferometer located on Mount Wilson, and state-of-the-art e-EVN interferometric techniques. We find that the longitude of the line of nodes for the close pair is Ω1=48\degr±2\degr and the mutual inclination of the orbital planes of the close and the wide pairs is 95\degr±3\degr. This latter value differs by 5\degr from the formerly known 100\degr which would imply a very fast inclination variation of the system, not borne out by the photometric observations. We also investigated the dynamics of the system with numerical integration of the equations of motions using our result as an initial condition. We found large variations in the inclination of the close pair (its amplitude ∼170\degr) with a period of about 20 millennia. This result is in good agreement with the photometrically observed change of amplitude in Algol's primary minimum.
@article{arxiv.0909.5049,
title = {Interferometric Observations of the Hierarchical Triple System Algol},
author = {Sz. Csizmadia and T. Borkovits and Zs. Paragi and P. Abraham and L. Szabados and L. Mosoni and L. Sturmann and J. Sturmann and C. Farrington and H. A. McAlister and T. A. ten Brummelaar and N. H. Turner and P. Klagyivik},
journal= {arXiv preprint arXiv:0909.5049},
year = {2014}
}
Comments
ApJ, in press. This is the accepted version; will be changed with the final version later (minor language corrections)