Rate and nature of false positives in the CoRoT exoplanet search
arXiv:0908.1172 · doi:10.1051/0004-6361/200911926
Abstract
Context. The CoRoT satellite searches for planets by applying the transit method, monitoring up to 12 000 stars in the galactic plane for 150 days in each observation run. This search is contaminated by a large fraction of false positives, caused by different binary configurations that might be confused with a transiting planet. Aims. We evaluate the rates and nature of false positives in the CoRoT exoplanets search and compare our results with semiempirical predictions. Methods. We consider the detected binary and planet candidates in the first three extended CoRoT runs, and classify the results of the follow-up observations completed to verify their planetary nature. We group the follow-up results into undiluted binaries, diluted binaries, and planets and compare their abundances with predictions from the literature. Results. 83% of the initial detections are classified as false positives using only the CoRoT light-curves, the remaining 17% require follow-up observations. Finally, 12% of the follow-up candidates are planets. The shape of the overall distribution of the false positive rate follows previous predictions, except for candidates with transit depths below about 0.4%. For candidates with transit depths in the range from 0.1 - 0.4%, CoRoT detections are nearly complete, and this difference from predictions is probably real and dominated by a lower than expected abundance of diluted eclipsing binaries.
accepted for A&A special issue on CoRoT
References in corpus (8)
- Transiting exoplanets from the CoRoT space mission VIII. CoRoT-7b: the first Super-Earth with measured radius
- Stellar Multiplicity and the IMF: Most Stars Are Single
- A method for the direct determination of the surface gravities of transiting extrasolar planets
- Ground-based photometry of space-based transit detections: Photometric follow-up of the CoRoT mission
- The AGN and Gas Disk in the Low Surface Brightness Galaxy PGC045080
- Planetary transit candidates in the CoRoT LRa01 field
- Planetary transit candidates in COROT-IRa01 field
- Expected Planet and False Positive Detection Rates for the Transiting Exoplanet Survey Satellite
Cited by in corpus (34)
- The PLATO 2.0 Mission
- Characteristics of Kepler Planetary Candidates Based on the First Data Set: The Majority are Found to be Neptune-Size and Smaller
- On the Low False Positive Probabilities of Kepler Planet Candidates
- SOPHIE velocimetry of Kepler transit candidates VII. A false-positive rate of 35% for Kepler close-in giant exoplanet candidates
- Ground-based photometry of space-based transit detections: Photometric follow-up of the CoRoT mission
- Multicolour photometry for exoplanet candidate validation
- The occurrence rate of giant planets orbiting low-mass stars with TESS
- CoRoT: harvest of the exoplanet program
- Objects in Kepler's Mirror May be Larger Than They Appear: Bias and Selection Effects in Transiting Planet Surveys
- The PLATO field selection process I. Identification and content of the long-pointing fields
- MuSCAT2 multicolour validation of TESS candidates: an ultra-short-period substellar object around an M dwarf
- The contribution of secondary eclipses as astrophysical false positives to exoplanet transit surveys
- Transit Shapes and Self Organising Maps as a Tool for Ranking Planetary Candidates: Application to Kepler and K2
- KOI-200b and KOI-889b: two transiting exoplanets detected and characterized with Kepler, SOPHIE and HARPS-N
- Planets, candidates, and binaries from the CoRoT/Exoplanet programme: the CoRoT transit catalogue
- Planetary transit candidates in the CoRoT LRa01 field
- Disproval of the validated planets K2-78b, K2-82b, and K2-92b
- High angular resolution imaging and infrared spectroscopy of CoRoT candidates
- Automatic vetting of planet candidates from ground based surveys: Machine learning with NGTS
- An all-sky catalog of solar-type dwarfs for exoplanetary transit surveys
- Unmasking the hidden NGTS-3Ab: a hot Jupiter in an unresolved binary system
- CoRoT 101186644: A transiting low-mass dense M-dwarf on an eccentric 20.7-day period orbit around a late F-star
- Discovery and characterization of the exoplanets WASP-148b and c. A transiting system with two interacting giant planets
- Ondr}ejov echelle spectrograph, ground based support facility for exoplanet missions
- TOI-519 b: a short-period substellar object around an M dwarf validated using multicolour photometry and phase curve analysis
- Searching For Transiting Circumbinary Planets in CoRoT and Ground-Based Data Using CB-BLS
- Characterization of the four new transiting planets KOI-188b, KOI-195b, KOI-192b, and KOI-830b
- Limits to the presence of transiting circumbinary planets in CoRoT data
- Sub-stellar Companions of Intermediate-mass Stars with CoRoT: CoRoT-34b, CoRoT-35b, and CoRoT-36b
- A New Yield Simulator for Transiting Planets and False Positives: Application to the Next Generation Transit Survey
- CoRoT LRa02_E2_0121: Neptune-size planet candidate turns into a hierarchical triple system with a giant primary
- High-resolution infrared spectroscopy as a tool to detect false positives of transit search programs
- SAFARI I: A SPHERE discovery of a super metal-rich M dwarf companion to the star HD 86006
- The power of low-resolution spectroscopy: On the spectral classification of planet candidates in the ground-based CoRoT follow-up