The APOGEE Spectroscopic Survey of Kepler Planet Hosts: Feasibility, Efficiency, and First Results
arXiv:1502.05035 · doi:10.1088/0004-6256/149/4/143
Abstract
The Kepler mission has yielded a large number of planet candidates from among the Kepler Objects of Interest (KOIs), but spectroscopic follow-up of these relatively faint stars is a serious bottleneck in confirming and characterizing these systems. We present motivation and survey design for an ongoing project with the SDSS-III multiplexed APOGEE near-infrared spectrograph to monitor hundreds of KOI host stars. We report some of our first results using representative targets from our sample, which include current planet candidates that we find to be false positives, as well as candidates listed as false positives that we do not find to be spectroscopic binaries. With this survey, KOI hosts are observed over ~20 epochs at a radial velocity precision of 100-200 m/s. These observations can easily identify a majority of false positives caused by physically-associated stellar or substellar binaries, and in many cases, fully characterize their orbits. We demonstrate that APOGEE is capable of achieving RV precision at the 100-200 m/s level over long time baselines, and that APOGEE's multiplexing capability makes it substantially more efficient at identifying false positives due to binaries than other single-object spectrographs working to confirm KOIs as planets. These APOGEE RVs enable ancillary science projects, such as studies of fundamental stellar astrophysics or intrinsically rare substellar companions. The coadded APOGEE spectra can be used to derive stellar properties (T_eff, log(g)) and chemical abundances of over a dozen elements to probe correlations of planet properties with individual elemental abundances.
Accepted in AJ, 17 pages, 13 figures, 4 tables
References in corpus (20)
- The 2.5 m Telescope of the Sloan Digital Sky Survey
- The Dartmouth Stellar Evolution Database
- Spectroscopic parameters for 451 stars in the HARPS GTO planet search program. Stellar [Fe/H] and the frequency of exo-Neptunes
- Three regimes of extrasolar planets inferred from host star metallicities
- The Stellar Populations of Praesepe and Coma Berenices
- 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
- The SEGUE Stellar Parameter Pipeline. III. Comparison with High-Resolution Spectroscopy of SDSS/SEGUE Field Stars
- KOI-126: A Triply-Eclipsing Hierarchical Triple with Two Low-Mass Stars
- Stellar Parameters and Metallicities of Stars Hosting Jovian and Neptunian Mass Planets: A Possible Dependence of Planetary Mass on Metallicity
- Efficient fitting of multiplanet Keplerian models to radial velocity and astrometry data
- SOPHIE velocimetry of Kepler transit candidates VII. A false-positive rate of 35% for Kepler close-in giant exoplanet candidates
- Cross-Correlation and Maximum Likelihood Analysis: A New Approach to Combine Cross-Correlation Functions
- APOGEE: The Apache Point Observatory Galactic Evolution Experiment
- Influence of Stellar Multiplicity On Planet Formation. II. Planets Are Less Common in Multiple-Star Systems with Separations Smaller than 1500 AU
- Extrasolar planets and brown dwarfs around A-F type stars VI. High precision RV survey of early type dwarfs with HARPS
- Five Kepler target stars that show multiple transiting exoplanet candidates
- C/O Ratios of Stars with Transiting Hot Jupiter Exoplanets
- Carbon and Oxygen in Nearby Stars: Keys to Protoplanetary Disk Chemistry
- The SDSS-HET Survey of Kepler Eclipsing Binaries: Spectroscopic Dynamical Masses of the Kepler-16 Circumbinary Planet Hosts
- The Detection of Low Mass Companions in Hyades Cluster Spectroscopic Binary Stars
Cited by in corpus (11)
- The Apache Point Observatory Galactic Evolution Experiment (APOGEE) Spectrographs
- Target Selection for the SDSS-IV APOGEE-2 Survey
- Final Targeting Strategy for the SDSS-IV APOGEE-2N Survey
- Kepler-730: A hot Jupiter system with a close-in, transiting, Earth-sized planet
- Elemental Abundances of Kepler Objects of Interest in APOGEE. I. Two Distinct Orbital Period Regimes Inferred from Host Star Iron Abundances
- Galactic chemical evolution of exoplanet host stars: Are high-mass planetary systems young?
- The Influence of 10 Unique Chemical Elements in Shaping the Distribution of Kepler Planets
- Age distribution of exoplanet host stars: Chemical and Kinematics age proxies from GAIA DR3
- TOI-150: A transiting hot Jupiter in the TESS southern CVZ
- Characterization of low-mass companions to objects of interest observed with APOGEE-N
- Syntriod: A Robust Initial Parameter Estimator for Radial Velocity Curve Solutions Beyond Conventional Sampling Limits