A Closer Look at Exoplanet Occurrence Rates: Considering the Multiplicity of Stars Without Detected Planets
arXiv:2011.09564 · doi:10.3847/1538-3881/abc47d
Abstract
One core goal of the Kepler mission was to determine the frequency of Earth-like planets that orbit Sun-like stars. Accurately estimating this planet occurrence rate requires both a well-vetted list of planets and a clear understanding of the stars searched for planets. Previous ground-based follow-up observations have, through a variety of methods, sought to improve our knowledge of stars that are known to host planets. Kepler targets without detected planets, however, have not been subjected to the same intensity of follow-up observations. In this paper, we better constrain stellar multiplicity for stars around which Kepler could have theoretically detected a transiting Earth-sized planet in the habitable zone. We subsequently aim to improve estimates of the exoplanet search completeness -- the fraction of exoplanets that were detected by Kepler -- with our analysis. By obtaining adaptive optics observations of 71 Kepler target stars from the Shane 3-m telescope at Lick Observatory, we detected 14 candidate stellar companions within 4'' of 13 target stars. Of these 14 candidate stellar companions, we determine through multiple independent methods that 3 are likely to be bound to their corresponding target star. We then assess the impact of our observations on exoplanet occurrence rate calculations, finding an increase in occurrence of 6% (0.9 ) for various estimates of the frequency of Earth-like planets and an increase of 26% (4.5 ) for super-Earths and sub-Neptunes. These occurrence increases are not entirely commensurate with theoretical predictions, though this discrepancy may be due to differences in the treatment of stellar binarity.
29 pages, 13 figures. Accepted for publication in AJ
References in corpus (20)
- Array Programming with NumPy
- The Gaia mission
- The Dartmouth Stellar Evolution Database
- The Kepler Follow-Up Observation Program. I. A Catalog of Companions to Kepler Stars from High-Resolution Imaging
- The Solar Neighborhood XLV. The Stellar Multiplicity Rate of M Dwarfs Within 25 pc
- New Distant Companions to Known Nearby Stars. II. Faint companions of Hipparcos stars and the frequency of wide binary systems
- Influence of Stellar Multiplicity On Planet Formation. II. Planets Are Less Common in Multiple-Star Systems with Separations Smaller than 1500 AU
- Most Sub-Arcsecond Companions of Kepler Exoplanet Candidate Host Stars are Gravitationally Bound
- Constraints on Extrasolar Planet Populations from VLT NACO/SDI and MMT SDI and Direct Adaptive Optics Imaging Surveys: Giant Planets are Rare at Large Separations
- An empirical calibration to estimate cool dwarf fundamental parameters from H-band spectra
- 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
- Adaptive Optics Images III: 87 Kepler Objects of Interest
- Unresolved Binary Exoplanet Host Stars Fit as Single Stars: Effects on the Stellar Parameters
- ShaneAO: wide science spectrum adaptive optics system for the Lick Observatory
- Accounting for Multiplicity in Calculating Eta Earth
- Rotation Periods of Wide Binaries in the Kepler Field
- Swimming with ShARCS: Comparison of On-sky Sensitivity With Model Predictions for ShaneAO on the Lick Observatory 3-meter Telescope
- Discovery of a White Dwarf Companion to HD 159062
- SRAO: optical design and the dual-knife-edge WFS
Cited by in corpus (30)
- Speckle Observations of TESS Exoplanet Host Stars. II. Stellar Companions at 1-1000 AU and Implications for Small Planet Detection
- The TESS-Keck Survey XX: 15 New TESS Planets and a Uniform RV Analysis of all Survey Targets
- TOI-2076 and TOI-1807: Two young, comoving planetary systems within 50 pc identified by TESS that are ideal candidates for further follow-up
- TESS Delivers Five New Hot Giant Planets Orbiting Bright Stars from the Full Frame Images
- The TESS Grand Unified Hot Jupiter Survey. II. Twenty New Giant Planets
- Validation of 13 Hot and Potentially Terrestrial TESS Planets
- 37 New Validated Planets in Overlapping K2 Campaigns
- TESS Hunt for Young and Maturing Exoplanets (THYME) VII : Membership, rotation, and lithium in the young cluster Group-X and a new young exoplanet
- Another Shipment of Six Short-Period Giant Planets from TESS
- Three new brown dwarfs and a massive hot Jupiter revealed by TESS around early-type stars
- The TESS Grand Unified Hot Jupiter Survey. I. Ten TESS Planets
- NEID Rossiter-McLaughlin Measurement of TOI-1268b: A Young Warm Saturn Aligned with Its Cool Host Star
- TOI-969: a late-K dwarf with a hot mini-Neptune in the desert and an eccentric cold Jupiter
- TESS discovery of a sub-Neptune orbiting a mid-M dwarf TOI-2136
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- Multiplicity of stars with planets in the solar neighbourhood
- A hot sub-Neptune in the desert and a temperate super-Earth around faint M dwarfs: Color validation of TOI-4479b and TOI-2081b
- TESS discovery of a super-Earth orbiting the M dwarf star TOI-1680
- A systematic validation of hot Neptunes in TESS data
- VaTEST II: Statistical Validation of 11 TESS-Detected Exoplanets Orbiting K-type Stars
- TESS and CHEOPS Discover Two Warm Sub-Neptunes Transiting the Bright K-dwarf HD 15906
- Validation of up to seven TESS planet candidates through multi-colour transit photometry using MuSCAT2 data
- Two warm Earth-sized exoplanets and an Earth-sized candidate in the M5V-M6V binary system TOI-2267
- SImMER: A Pipeline for Reducing and Analyzing Images of Stars
- Determining Which Binary Component Hosts the TESS Transiting Planet
- Small and Close-In Planets are Uncommon Around A-type Stars
- TOI-2498 b: A hot bloated super-Neptune within the Neptune desert
- Geoastronomy: Rocky planets as the Lavosier-Lomonosov Bridge from the non-living to the living world
- Gas-depleted planet formation occurred in the four-planet system around the red dwarf LHS 1903
- TOI-1634 b: an Ultra-Short Period Keystone Planet Sitting Inside the M Dwarf Radius Valley