Results of an analysis of the BRITE-Constellation photometry of the SB1 system and ellipsoidal variable π5 Ori (B2\,III) are presented. In addition to the orbital light-variation, which can be represented as a five-term Fourier cosine series with the frequencies forb, 2forb, 3forb, 4forb and 6forb, where forb is the system's orbital frequency, the star shows five low-amplitude but highly-significant sinusoidal variations with frequencies fi (i=2,..,5,7) in the range from 0.16 to 0.92~d−1. With an accuracy better than 1σ, the latter frequencies obey the following relations: f2−f4=2forb, f7−f3=2forb, f5=f3−f4=f7−f2. We interpret the first two relations as evidence that two high-order ℓ=1,m=0 gravity modes are self-excited in the system's tidally distorted primary component. The star is thus an ellipsoidal SPB variable. The last relations arise from the existence of the first-order differential combination term between the two modes. Fundamental parameters, derived from photometric data in the literature and the {\em Hipparcos\/} parallax, indicate that the primary component is close to the terminal stages of its main sequence (MS) evolution. Extensive Wilson-Devinney modeling leads to the conclusion that best fits of the theoretical to observed light-curves are obtained for the effective temperature and mass consistent with the primary's position in the HR diagram and suggests that the secondary is in an early MS evolutionary stage.
@article{arxiv.2006.05178,
title = {BRITE-Constellation photometry of $\bpi^5$ Orionis, an ellipsoidal SPB variable},
author = {M. Jerzykiewicz and A. Pigulski and G. Handler and A. F. J. Moffat and A. Popowicz and G. A. Wade and K. Zwintz and H. Pablo},
journal= {arXiv preprint arXiv:2006.05178},
year = {2020}
}