PASTIS: Bayesian extrasolar planet validation. I. General framework, models, and performance
arXiv:1403.6725 · doi:10.1093/mnras/stu601
Abstract
A large fraction of the smallest transiting planet candidates discovered by the Kepler and CoRoT space missions cannot be confirmed by a dynamical measurement of the mass using currently available observing facilities. To establish their planetary nature, the concept of planet validation has been advanced. This technique compares the probability of the planetary hypothesis against that of all reasonably conceivable alternative false-positive (FP) hypotheses. The candidate is considered as validated if the posterior probability of the planetary hypothesis is sufficiently larger than the sum of the probabilities of all FP scenarios. In this paper, we present PASTIS, the Planet Analysis and Small Transit Investigation Software, a tool designed to perform a rigorous model comparison of the hypotheses involved in the problem of planet validation, and to fully exploit the information available in the candidate light curves. PASTIS self-consistently models the transit light curves and follow-up observations. Its object-oriented structure offers a large flexibility for defining the scenarios to be compared. The performance is explored using artificial transit light curves of planets and FPs with a realistic error distribution obtained from a Kepler light curve. We find that data support for the correct hypothesis is strong only when the signal is high enough (transit signal-to-noise ratio above 50 for the planet case) and remains inconclusive otherwise. PLATO shall provide transits with high enough signal-to-noise ratio, but to establish the true nature of the vast majority of Kepler and CoRoT transit candidates additional data or strong reliance on hypotheses priors is needed.
Accepted for publication in MNRAS; 23 pages, 11 figures
References in corpus (9)
- The Dartmouth Stellar Evolution Database
- The Occurrence and Mass Distribution of Close-in Super-Earths, Neptunes, and Jupiters
- VOSA: Virtual Observatory SED Analyzer. An application to the Collinder 69 open cluster
- Kepler-62: A five-planet system with planets of 1.4 and 1.6 Earth radii in the Habitable Zone
- Modeling Kepler transit light curves as false positives: Rejection of blend scenarios for Kepler-9, and validation of Kepler-9d, a super-Earth-size planet in a multiple system
- SOPHIE velocimetry of Kepler transit candidates VII. A false-positive rate of 35% for Kepler close-in giant exoplanet candidates
- The Challenge of Wide-Field Transit Surveys: The Case of GSC 01944-02289
- SOPHIE velocimetry of Kepler transit candidates. VIII. KOI-205 b: a brown-dwarf companion to a K-type dwarf
- Observational Window Functions in Planet Transit Surveys
Cited by in corpus (18)
- 197 Candidates and 104 Validated Planets in K2's First Five Fields
- SOPHIE velocimetry of Kepler transit candidates XII. KOI-1257 b: a highly eccentric three-month period transiting exoplanet
- Low False-Positive Rate of Kepler Candidates Estimated From A Combination Of Spitzer And Follow-Up Observations
- Revisiting the transits of CoRoT-7b at a lower activity level
- SOPHIE velocimetry of Kepler transit candidates. XV. KOI-614b, KOI-206b, and KOI-680b: a massive warm Jupiter orbiting a G0 metallic dwarf and two highly inflated planets with a distant companion around evolved F-type stars
- Transit Shapes and Self Organising Maps as a Tool for Ranking Planetary Candidates: Application to Kepler and K2
- Refined architecture of the WASP-8 system: a cautionary tale for traditional Rossiter-McLaughlin analysis
- Precise masses for the transiting planetary system HD 106315 with HARPS
- Disproval of the validated planets K2-78b, K2-82b, and K2-92b
- SOPHIE velocimetry of Kepler transit candidates XIV. A joint photometric, spectroscopic, and dynamical analysis of the Kepler-117 system
- Characterization of the four new transiting planets KOI-188b, KOI-195b, KOI-192b, and KOI-830b
- Transiting exoplanets from the CoRoT space mission XXVII. CoRoT-28b, a planet orbiting an evolved star, and CoRoT-29b, a planet showing an asymmetric transit
- Is the activity level of HD 80606 influenced by its eccentric planet?
- CoRoT-22 b: a validated 4.9 RE exoplanet in 10-day orbit
- Disentangling planetary and stellar activity features in the CoRoT-2 light curve
- ExELS: an exoplanet legacy science proposal for the ESA Euclid mission. II. Hot exoplanets and sub-stellar systems
- Spectroscopic characterisation of microlensing events Towards a new interpretation of OGLE-2011-BLG-0417
- How Rocky Are They? The Composition Distribution of Kepler's Sub-Neptune Planet Candidates within 0.15 AU