English

TESS Photometry of the Eclipsing $\delta$ Scuti Star AI Hydrae

Solar and Stellar Astrophysics 2020-05-06 v1

Abstract

AI Hya has been known as an eclipsing binary with a monoperiodic δ\delta Sct pulsator. We present the results from its {\it TESS} photometry observed during Sector 7. Including our five minimum epochs, the eclipse timing diagram displays the apsidal motion with a rate of ω˙\dot{\omega} = 0.075±\pm0.031 deg year1^{-1}, which corresponds to an apsidal period of U = 4800±\pm2000 years. The binary star model represents that the smaller, less massive primary component is 427 K hotter than the pulsating secondary, and our distance of 612±\pm36 pc is in good agreement with the GaiaGaia distance of 644±\pm26 pc. We subtracted the binary effects from the observed {\it TESS} data and applied a multifrequency analysis to these residuals. The result reveals that AI Hya is multiperiodic in its pulsation. Of 14 signals detected, four (f1f_1, f2f_2, f3f_3, f6f_6) may be considered independent pulsation frequencies. The period ratios of Ppul/PorbP_{\rm pul}/P_{\rm orb} = 0.012-0.021 and the pulsation constants of QQ = 0.30-0.52 days correspond to δ\delta Sct pulsations in binaries. We found that the secondary component of AI Hya pulsates in both radial fundamental FF modes (f2f_2 and f3f_3) and non-radial g1g_1 modes with a low degree of \ell = 2 (f1f_1 and f6f_6).

Keywords

Cite

@article{arxiv.2002.10588,
  title  = {TESS Photometry of the Eclipsing $\delta$ Scuti Star AI Hydrae},
  author = {Jae Woo Lee and Kyeongsoo Hong and Martti H. Kristiansen},
  journal= {arXiv preprint arXiv:2002.10588},
  year   = {2020}
}

Comments

16 pages, including 5 figures and 5 tables, accepted for publication in PASJ