Transit probability of precessing circumstellar planets in binaries and exomoons
arXiv:1701.04129 · doi:10.1093/mnras/stx122
Abstract
Over two decades of exoplanetology have yielded thousands of discoveries, yet some types of systems are yet to be observed. Circumstellar planets around one star in a binary have been found, but not for tight binaries (< 5 AU). Additionally, extra-solar moons are yet to be found. This paper motivates finding both types of three-body system by calculating analytic and numerical probabilities for all transit configurations, accounting for any mutual inclination and orbital precession. The precession and relative three-body motion can increase the transit probability to as high as tens of per cent, and make it inherently time-dependent over a precession period as short as 5-10 yr. Circumstellar planets in such tight binaries present a tempting observational challenge: enhanced transit probabilities but with a quasi-periodic signature that may be difficult to identify. This may help explain their present non-detection, or maybe they simply do not exist. Whilst this paper considers binaries of all orientations, it is demonstrated how eclipsing binaries favourably bias the transit probabilities, sometimes to the point of being guaranteed. Transits of exomoons exhibit a similar behaviour under precession, but unfortunately only have one star to transit rather than two.
Accepted for publication in MNRAS, 8 pages, 11 figures
References in corpus (4)
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Cited by in corpus (6)
- TOI-1338: TESS' First Transiting Circumbinary Planet
- Evidence for a high mutual inclination between the cold Jupiter and transiting super Earth orbiting Men
- Orbital Stability of Circumstellar Planets in Binary Systems
- Distinguishing Polar and Co-planar Circumbinary Exoplanets by Eclipsing Timing Variations
- Transits of Inclined Exomoons - Hide and Seek and an Application to Kepler-1625
- Exoplanet Nodal Precession Induced by Rapidly Rotating Stars: Impacts on Transit Probabilities and Biases