Short-period Heartbeat Binaries from TESS Full-Frame Images
Abstract
We identify short-period ( days) binary systems in the TESS data, of which are heartbeat binaries (HB). The sample is mostly a mix of A and B-type stars and primarily includes eclipsing systems, where over of the sources with primary and secondary eclipses show a secular change in their inter-eclipse timings and relative eclipse depths over a multi-year timescale, likely due to orbital precession. The orbital parameters of the population are estimated by fitting a heartbeat model to their phase curves and Gaia magnitudes, where the model accounts for ellipsoidal variability, Doppler beaming, reflection effects, and eclipses. We construct the sample's period-eccentricity distribution and find an eccentricity cutoff (where ) at a period days. Additionally, we measure the periastron advance rate for the of the precessing sources and find that they all exhibit prograde apsidal precession, which is as high as yr for one of the systems. Using the inferred stellar parameters, we estimate the general relativistic precession rate of the argument of periastron for the population and expect over systems to show a precession in excess of yr
Keywords
Cite
@article{arxiv.2407.14421,
title = {Short-period Heartbeat Binaries from TESS Full-Frame Images},
author = {Siddhant Solanki and Agnieszka M. Cieplak and Jeremy Schnittman and John G. Baker and Thomas Barclay and Richard K. Barry and Veselin Kostov and Ethan Kruse and Greg Olmschenk and Brian P. Powell and Stela Ishitani Silva and Guillermo Torres},
journal= {arXiv preprint arXiv:2407.14421},
year = {2024}
}
Comments
Accepted for publication in ApJ