English

Mass transfer and tidally tilted pulsation in the Algol-type system TZ Dra

Solar and Stellar Astrophysics 2021-12-08 v1

Abstract

Oscillating eclipsing Algols (oEAs) are remarkable systems which allow us to determine accurate fundamental stellar parameters (mass, radius) and probe the stellar interiors through pulsations. TZ\,Dra is an oEA system containing a δ\delta Scuti component. To examine particular characteristics of such close systems including pulsations and mass transfer, we present a detailed photometric and spectroscopic study of TZ\,Dra. With the analysis of high-resolution spectra, the orbital parameters were determined by the radial velocity analysis and the atmospheric parameters were derived for the primary component. The binary modelling and the pulsational frequency analysis was carried out using the TESS data set. The Hα\alpha line profiles show the signature of mass transfer from the cool to the hot binary component. The conclusion of mass transfer/mass loss in the system was supported by the analysis of the orbital period changes. As a result, it was found that there is 3.52×1093.52 \times 10^{-9} MM_\odot/year mass loss from the system most probably through the hotspot and stellar winds. Additionally, most pulsation frequencies originating from the primary component were found to be spaced by harmonics of the orbital frequencies in particular, twelve doublets spaced by 2forb2f_{\rm orb} were detected from which we infer that this star a tidally tilted pulsator. A mean p-mode frequency spacing of 7.2\approx 7.2 d1^{-1} was found as well.

Keywords

Cite

@article{arxiv.2112.03687,
  title  = {Mass transfer and tidally tilted pulsation in the Algol-type system TZ Dra},
  author = {F. Kahraman Alicavus and G. Handler and F. Alicavus and P. De Cat and T. R. Bedding and P. Lampens and O. Ekinci and D. Gumus and F. Leone},
  journal= {arXiv preprint arXiv:2112.03687},
  year   = {2021}
}

Comments

Accepted for publication in MNRAS, 14 pages, supported by the Scientific and Technological Research Council (TUBITAK) project through 120F330