Robo-AO Kepler Survey IV: the effect of nearby stars on 3857 planetary candidate systems
arXiv:1712.04454 · doi:10.3847/1538-3881/aab042
Abstract
We present the overall statistical results from the Robo-AO Kepler planetary candidate survey, comprising of 3857 high-angular resolution observations of planetary candidate systems with Robo-AO, an automated laser adaptive optics system. These observations reveal previously unknown nearby stars blended with the planetary candidate host star which alter the derived planetary radii or may be the source of an astrophysical false positive transit signal. In the first three papers in the survey, we detected 440 nearby stars around 3313 planetary candidate host stars. In this paper, we present observations of 532 planetary candidate host stars, detecting 94 companions around 88 stars; 84 of these companions have not previously been observed in high-resolution. We also report 50 more-widely-separated companions near 715 targets previously observed by Robo-AO. We derive corrected planetary radius estimates for the 814 planetary candidates in systems with a detected nearby star. If planetary candidates are equally likely to orbit the primary or secondary star, the radius estimates for planetary candidates in systems with likely bound nearby stars increase by a factor of 1.54, on average. We find that 35 previously-believed rocky planet candidates are likely not rocky due to the presence of nearby stars. From the combined data sets from the complete Robo-AO KOI survey, we find that 14.5\pm0.5% of planetary candidate hosts have a nearby star with 4", while 1.2% have two nearby stars and 0.08% have three. We find that 16% of Earth-sized, 13% of Neptune-sized, 14% of Saturn-sized, and 19% of Jupiter-sized planet candidates have detected nearby stars.
Accepted to the Astronomical Journal
References in corpus (24)
- The Transiting Exoplanet Survey Satellite
- The UKIRT Infrared Deep Sky Survey (UKIDSS)
- The Dartmouth Stellar Evolution Database
- The K2 Mission: Characterization and Early results
- Most 1.6 Earth-Radius Planets are not Rocky
- Habitable planets around the star Gl 581?
- The Kepler Follow-Up Observation Program. I. A Catalog of Companions to Kepler Stars from High-Resolution Imaging
- Kepler-62: A five-planet system with planets of 1.4 and 1.6 Earth radii in the Habitable Zone
- Steady-state planet migration by the Kozai-Lidov mechanism in stellar binaries
- Friends of Hot Jupiters. IV. Stellar companions beyond 50 AU might facilitate giant planet formation, but most are unlikely to cause Kozai-Lidov migration
- Influence of Stellar Multiplicity On Planet Formation. II. Planets Are Less Common in Multiple-Star Systems with Separations Smaller than 1500 AU
- High-resolution imaging of planet host candidates. A comprehensive comparison of different techniques
- Validation of Twelve Small Kepler Transiting Planets in the Habitable Zone
- Most Sub-Arcsecond Companions of Kepler Exoplanet Candidate Host Stars are Gravitationally Bound
- Evryscope science: exploring the potential of all-sky gigapixel-scale telescopes
- High-efficiency Autonomous Laser Adaptive Optics
- High-resolution Multi-band Imaging for Validation and Characterization of Small Kepler Planets
- Assessing the Effect of Stellar Companions from High-Resolution Imaging of Kepler Objects of Interest
- Hubble Space Telescope High Resolution Imaging of Kepler Small and Cool Exoplanet Host Stars
- Adaptive Optics Images III: 87 Kepler Objects of Interest
- The Robo-AO software: Fully autonomous operation of a laser guide star adaptive optics and science system
- Probability of Physical Association of 104 Blended Companions to \textit{Kepler} Objects of Interest Using Visible and Near-Infrared Adaptive Optics Photometry
- SRAO: optical design and the dual-knife-edge WFS
- PULSE: The Palomar Ultraviolet Laser for the Study of Exoplanets
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- Revised Radii of Kepler Stars and Planets Using Gaia Data Release 2
- SOAR TESS Survey. I: Sculpting of TESS planetary systems by stellar companions
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- Kepler Planet Occurrence Rates for Mid-Type M Dwarfs as a Function of Spectral Type
- Do Kepler superflare stars really include slowly-rotating Sun-like stars ? - Results using APO 3.5m telescope spectroscopic observations and Gaia-DR2 data -
- The L 98-59 System: Three Transiting, Terrestrial-Sized Planets Orbiting a Nearby M-dwarf
- Searching the Entirety of Kepler Data. II. Occurrence Rate Estimates for FGK Stars
- Measuring the Recoverability of Close Binaries in Gaia DR2 with the Robo-AO Kepler Survey
- Zodiacal Exoplanets in Time (ZEIT) VIII: A Two Planet System in Praesepe from K2 Campaign 16
- An Eccentric Massive Jupiter Orbiting a Sub-Giant on a 9.5 Day Period Discovered in the Transiting Exoplanet Survey Satellite Full Frame Images
- Revisiting the impact of stellar magnetic activity on the detectability of solar-like oscillations by Kepler
- SOAR TESS Survey. II: The impact of stellar companions on planetary populations
- A hot terrestrial planet orbiting the bright M dwarf L 168-9 unveiled by TESS
- Unresolved Binary Exoplanet Host Stars Fit as Single Stars: Effects on the Stellar Parameters
- Near-resonance in a system of sub-Neptunes from TESS
- Robo-AO Kepler Survey V: The effect of physically associated stellar companions on planetary systems
- The Effects of Stellar Companions on Exoplanet Radius Distributions
- A multiplicity study of transiting exoplanet host stars. II. Revised properties of transiting planetary systems with companions
- Detecting Unresolved Binaries in TESS Data with Speckle Imaging
- Another Shipment of Six Short-Period Giant Planets from TESS
- Demographics of Exoplanets in Binaries (DEB). I. Architecture of S-Type Planetary Systems Revealed by the RV Sample
- The Stars Kepler Missed: Investigating the Kepler Target Selection Function Using Gaia DR2
- Revising Properties of Planet-Host Binary Systems. III. There is No Observed Radius Gap For Kepler Planets in Binary Star Systems
- Revising Properties of Planet-Host Binary Systems. IV. The Radius Distribution of Small Planets in Binary Star Systems is Dependent on Stellar Separation
- Sustained Kozai-Lidov oscillations in misaligned circumstellar gas disks
- Assessing Spectroscopic-Binary Multiplicity Properties Using Robo-AO Imaging
- Two Massive Jupiters in Eccentric Orbits from the TESS Full Frame Images
- Multi-planet disc interactions in binary systems
- Hundreds of TESS exoplanets might be larger than we thought
- Formation of polar circumstellar discs in binary star systems
- A hot Mars-sized exoplanet transiting an M dwarf
- A dynamical origin for planets in triple star systems
- Robo-AO Kepler Asteroseismic Survey. II. Do Stellar Companions Inhibit Stellar Oscillations?
- Revising Properties of Planet-host Binary Systems II: Apparent Near-Earth Analog Planets in Binaries Are Often Sub-Neptunes
- Light-Curve Evolution due to Secular Dynamics and the Vanishing Transits of KOI 120.01
- Characterization of low-mass companions to objects of interest observed with APOGEE-N