Masses of Kepler-46b, c from Transit Timing Variations
arXiv:1704.01541 · doi:10.3847/1538-3881/aa64e0
Abstract
We use 16 quarters of the \textit{Kepler} mission data to analyze the transit timing variations (TTVs) of the extrasolar planet Kepler-46b (KOI-872). Our dynamical fits confirm that the TTVs of this planet (period days) are produced by a non-transiting planet Kepler-46c ( days). The Bayesian inference tool \texttt{MultiNest} is used to infer the dynamical parameters of Kepler-46b and Kepler-46c. We find that the two planets have nearly coplanar and circular orbits, with eccentricities somewhat higher than previously estimated. The masses of the two planets are found to be and Jupiter masses, with being determined here from TTVs for the first time. Due to the precession of its orbital plane, Kepler-46c should start transiting its host star in a few decades from now.
12 pages, 6 figures
References in corpus (7)
- DHP Framework: Digital Health Passports Using Blockchain -- Use case on international tourism during the COVID-19 pandemic
- Resonant Repulsion of Kepler Planet Pairs
- Analytic Approximations for Transit Light Curve Observables, Uncertainties, and Covariances
- TTVFast: An efficient and accurate code for transit timing inversion problems
- Large eccentricity, low mutual inclination: the three-dimensional architecture of a hierarchical system of giant planets
- Measurement of planet masses with transit timing variations due to synodic "chopping" effects
- Photo-Dynamical Analysis of Three Kepler Objects of Interest with Significant Transit Timing Variations
Cited by in corpus (13)
- Minerva-Australis I: Design, Commissioning, & First Photometric Results
- TESS spots a mini-neptune interior to a hot saturn in the TOI-2000 system
- K2-139 b: a low-mass warm Jupiter on a 29-day orbit transiting an active K0 V star
- Updated Catalog of Kepler Planet Candidates: Focus on Accuracy and Orbital Periods
- The architecture and formation of the Kepler-30 planetary system
- Systematic search for long-term transit duration changes in Kepler transiting planets
- Robustly detecting changes in warm Jupiters' transit impact parameters
- A super-Earth and a mini-Neptune around Kepler-59
- How to Find a Planet from Transit Variations
- Nauyaca: a new tool to determine planetary masses and orbital elements through transit timing analysis
- The Occurrence-weighted Median Planets Discovered by Transit Surveys Orbiting Solar-type Stars and Their Implications for Planet Formation and Evolution
- 5 Years of Defocused Observations of Exoplanet Transits with T100: Timing Perspective
- Accounting for Transit Timing Detectability: Biases in Planetary Radius and Orbital Period