Objects in Kepler's Mirror May be Larger Than They Appear: Bias and Selection Effects in Transiting Planet Surveys
arXiv:1211.2279 · doi:10.1088/0004-637X/762/1/41
Abstract
Statistical analyses of large surveys for transiting planets such as the Kepler mission must account for systematic errors and biases. Transit detection depends not only on the planet's radius and orbital period, but also on host star properties. Thus, a sample of stars with transiting planets may not accurately represent the target population. Moreover, targets are selected using criteria such as a limiting apparent magnitude. These selection effects, combined with uncertainties in stellar radius, lead to biases in the properties of transiting planets and their host stars. We quantify possible biases in the Kepler survey. First, Eddington bias produced by a steep planet radius distribution and uncertainties in stellar radius results in a 15-20% overestimate of planet occurrence. Second, the magnitude limit of the Kepler target catalog induces Malmquist bias towards large, more luminous stars and underestimation of the radii of about one third of candidate planets, especially those larger than Neptune. Third, because metal-poor stars are smaller, stars with detected planets will be very slightly (<0.02 dex) more metal-poor than the target average. Fourth, uncertainties in stellar radii produce correlated errors in planet radius and stellar irradiation. A previous finding, that highly-irradiated giant are more likely to have "inflated" radii, remains significant, even accounting for this effect. In contrast, transit depth is negatively correlated with stellar metallicity even in the absence of any intrinsic correlation, and a previous claim of a negative correlation between giant planet transit depth and stellar metallicity is probably an artifact.
Accepted to The Astrophysical Journal
References in corpus (19)
- The Dartmouth Stellar Evolution Database
- New constraints on the chemical evolution of the solar neighbourhood and Galactic disc(s). Improved astrophysical parameters for the Geneva-Copenhagen Survey
- DHP Framework: Digital Health Passports Using Blockchain -- Use case on international tourism during the COVID-19 pandemic
- Mass-Radius Relationships for Solid Exoplanets
- Detection of Thermal Emission from an Extrasolar Planet
- The Occurrence and Mass Distribution of Close-in Super-Earths, Neptunes, and Jupiters
- Spectroscopic parameters for 451 stars in the HARPS GTO planet search program. Stellar [Fe/H] and the frequency of exo-Neptunes
- Stellar Diameters and Temperatures II. Main Sequence K & M Stars
- The effect of red noise on planetary transit detection
- A Re-appraisal of the Habitability of Planets Around M Dwarf Stars
- Detailed Models of super-Earths: How well can we infer bulk properties?
- Inflating Hot Jupiters With Ohmic Dissipation
- Revised metallicity classes for low-mass stars: dwarfs (dM), subdwarfs (sdM), extreme subdwarfs (esdM), and ultra subdwarfs (usdM)
- The Very Low Albedo of an Extrasolar Planet: MOST Spacebased Photometry of HD 209458
- SOPHIE velocimetry of Kepler transit candidates VII. A false-positive rate of 35% for Kepler close-in giant exoplanet candidates
- Planet Engulfment by ~1.5-3 Solar-Mass Red Giants
- A Long-Period Jupiter-Mass Planet Orbiting the Nearby M Dwarf GJ849
- New Worlds on the Horizon: Earth-Sized Planets Close to Other Stars
- The Penn State-Torun Centre for Astronomy Planet Search stars. I. Spectroscopic analysis of 348 red giants
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- Zodiacal Exoplanets in Time (ZEIT) VI: a three-planet system in the Hyades cluster including an Earth-sized planet
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- Candidate Planets in the Habitable Zones of Kepler Stars
- Testing the Metal of Late-Type Kepler Planet Hosts with Iron-Clad Methods
- The metallicity distribution and hot Jupiter rate of the Kepler field: Hectochelle High-resolution spectroscopy for 776 Kepler target stars
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- The true stellar parameters of the Kepler target list
- The Stars Kepler Missed: Investigating the Kepler Target Selection Function Using Gaia DR2
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- Trawling for transits in a sea of noise: A Search for Exoplanets by Analysis of WASP Optical Lightcurves and Follow-up (SEAWOLF)
- The Demographics of Wide-Separation Planets
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