A Few Years Later: Revisiting Period Variations of Eclipsing Binaries in the Northern Continuous Viewing Zone of TESS
arXiv:2604.04004 · doi:10.3390/universe12040107
Abstract
In our previous analysis of the eclipse timing variation patterns of eclipsing binaries located in and near the Northern Continuous Viewing Zone (NCVZ) of the TESS space telescope, 135 hierarchical triple star candidates were found. Now, two additional years of TESS observations are available and, hence, we have extended the former analysis with the use of the new observational data. We now detect 168 triple star candidates in the updated and reanalyzed sample. The majority () of them are identical to the former triples candidates. For many of them, our new solutions are more certain than the original ones. Therefore, we can now conclude that we have identified at least 66 short-period hierarchical triple stellar systems in the NCVZ with full confidence. In the case of the majority of the remaining systems in our sample, the presence of a close third stellar component appears to be very likely. We also identify additional, longer timescale period variations in 34 systems ( of the total sample) and conclude that in at least three systems the presence of a fourth stellar component is quite plausible. Finally, we report the complete disappearance of the eclipses in two former EBs and detect eclipse depth variations in seven other EBs as well. We interpret this effect as the consequence of changing orbital inclination caused by a non-coplanar third body.
Published as Borkovits et al., 2026, Universe, 12, 107
References in corpus (6)
- The Transiting Exoplanet Survey Satellite
- Eclipse Timing Variation Analyses of Eccentric Binaries with Close Tertiaries in the Kepler field
- A Study of Nine Triply Eclipsing Triples
- Then and now: A new look at the eclipse timing variations of hierarchical triple star candidates in the primordial -field, revisited by TESS
- TIC 114936199: A Quadruple Star System with a 12-day Outer Orbit Eclipse
- Precision timing of eclipsing binaries from TESS full frame images. Method and performance