Von Zeipel – Lidov – Kozai cycles in action: Kepler triples with eclipse depth variations: KICs 6964043, 5653126, 5731312, and 8023317

Author:

Borkovits T12345ORCID,Rappaport S A6,Toonen S7,Moe M8,Mitnyan T12,Csányi I1

Affiliation:

1. Baja Astronomical Observatory of University of Szeged , H-6500 Baja, Szegedi út, Kt. 766, Hungary

2. ELKH-SZTE Stellar Astrophysics Research Group , H-6500 Baja, Szegedi út, Kt. 766, Hungary

3. Konkoly Observatory , Research Centre for Astronomy and Earth Sciences, H-1121 Budapest, Konkoly Thege Miklós út 15-17, Hungary

4. ELTE Gothard Astrophysical Observatory , H-9700 Szombathely, Szent Imre h. u. 112, Hungary

5. MTA-ELTE Exoplanet Research Group , H-9700 Szombathely, Szent Imre h. u. 112, Hungary

6. Department of Physics, Kavli Institute for Astrophysics and Space Research , M.I.T., Cambridge, MA 02139, USA

7. Anton Pannekoek Institute for Astronomy, University of Amsterdam , NL-1090 GE Amsterdam, the Netherlands

8. University of Arizona, Steward Observatory , 933 N. Cherry Ave., Tucson, AZ 85721, USA

Abstract

ABSTRACT We report the results of the photodynamical analyses of four compact, tight triple stellar systems, KICs 6964043, 5653126, 5731312, and 8023317, based largely on Kepler and TESS data. All systems display remarkable eclipse timing and eclipse depth variations, the latter implying a non-aligned outer orbit. Moreover, KIC 6964043 is also a triply eclipsing system. We combined photometry, ETV curves, and archival spectral energy distribution data to obtain the astrophysical parameters of the constituent stars and the orbital elements with substantial precision. KICs 6964043 and 5653126 were found to be nearly flat with mutual inclinations imut = 4${_{.}^{\circ}}$1 and 12${_{.}^{\circ}}$3, respectively, while KICs 5731312 and 8023317 (imut = 39${_{.}^{\circ}}$4 and 55${_{.}^{\circ}}$7, respectively) are found to lie in the high imut regime of the von Zeipel-Kozai-Lidov (ZKL) theorem. We show that, currently, both high inclination triples exhibit observable unusual retrograde apsidal motion. Moreover, the eclipses will disappear in all but one of the four systems within a few decades. Short-term numerical integrations of the dynamical evolution reveal that both high inclination triples are currently subject to ongoing, large amplitude (Δe ∼ 0.3) inner eccentricity variations on centuries-long time-scales, in accord with the ZKL theorem. Longer-term integrations predict that two of the four systems may become dynamically unstable on ∼ Gyr time-scales, while in the other two triples common envelope phases and stellar mergers may occur. Finally, we investigate the dynamical properties of a sample of 71 KIC/TIC triples statistically, and find that the mutual inclinations and outer mass ratios are anticorrelated at the 4σ level. We discuss the implications for the formation mechanisms of compact triples.

Funder

European Space Agency

NWO

NASA

MAST

National Science Foundation

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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