Alleviating the Transit Timing Variations bias in transit surveys. II. RIVERS: Twin resonant Earth-sized planets around Kepler-1972 recovered from Kepler's false positive
arXiv:2201.11459 · doi:10.1051/0004-6361/202142822
Abstract
Transit Timing Variations (TTVs) can provide useful information for systems observed by transit, by putting constraints on the masses and eccentricities of the observed planets, or even constrain the existence of non-transiting companions. However, TTVs can also prevent the detection of small planets in transit surveys, or bias the recovered planetary and transit parameters. Here we show that Kepler-1972 c, initially the "not transit-like" false positive KOI-3184.02, is an Earth-sized planet whose orbit is perturbed by Kepler-1972 b (initially KOI-3184.01). The pair is locked in a 3:2 Mean-motion resonance, each planet displaying TTVs of more than 6h hours of amplitude over the duration of the Kepler mission. The two planets have similar masses and radii , , and the whole system, including the inner candidate KOI-3184.03, appear to be coplanar. Despite the faintness of the signals (SNR of 1.35 for each transit of Kepler-1972 b and 1.10 for Kepler-1972 c), we recovered the transits of the planets using the RIVERS method, based on the recognition of the tracks of planets in river diagrams using machine learning, and a photo-dynamic fit of the lightcurve. Recovering the correct ephemerides of the planets is essential to have a complete picture of the observed planetary systems. In particular, we show that in Kepler-1972, not taking into account planet-planet interactions yields an error of on the radii of planets b and c, in addition to generating in-transit scatter, which leads to mistake KOI3184.02 for a false positive. Alleviating this bias is essential for an unbiased view of Kepler systems, some of the TESS stars, and the upcoming PLATO mission.
arXiv admin note: text overlap with arXiv:2111.06825
References in corpus (17)
- Gaia Early Data Release 3: Parallax bias versus magnitude, colour, and position
- DHP Framework: Digital Health Passports Using Blockchain -- Use case on international tourism during the COVID-19 pandemic
- Synthetic Stellar Photometry - I. General considerations and new transformations for broad-band systems
- Limb darkening and exoplanets: testing stellar model atmospheres and identifying biases in transit parameters
- Asynchronous rotation of Earth-mass planets in the habitable zone of lower-mass stars
- Six transiting planets and a chain of Laplace resonances in TOI-178
- TTVFast: An efficient and accurate code for transit timing inversion problems
- Synthetic Stellar Photometry - II. Testing the bolometric flux scale, and tables of bolometric corrections for the Hipparcos/Tycho, Pan-STARRS1, SkyMapper and JWST systems
- The Effect of Conjunctions on the Transit Timing Variations of Exoplanets
- Analytical model of multi-planetary resonant chains and constraints on migration scenarios
- Efficient modeling of correlated noise II. A flexible noise model with fast and scalable methods
- Efficient modeling of correlated noise. III. Scalable methods for jointly modeling several observables' time series with Gaussian processes
- TOI-216: Resonant Constraints on Planet Migration
- Alleviating the transit timing variation bias in transit surveys. I. RIVERS: Method and detection of a pair of resonant super-Earths around Kepler-1705
- Visual Analysis and Demographics of Kepler Transit Timing Variations
- Spin dynamics of close-in planets exhibiting large TTVs
- Uniform Modeling of KOIs: MCMC Data Release Notes
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