Kepler's Last Planet Discoveries: Two New Planets and One Single-Transit Candidate from K2 Campaign 19
arXiv:2305.18516 · doi:10.1093/mnras/stad1049
Abstract
The Kepler space telescope was responsible for the discovery of over 2,700 confirmed exoplanets, more than half of the total number of exoplanets known today. These discoveries took place during both Kepler's primary mission, when it spent 4 years staring at the same part of the sky, and its extended K2 mission, when a mechanical failure forced it to observe different parts of the sky along the ecliptic. At the very end of the mission, when Kepler was exhausting the last of its fuel reserves, it collected a short set of observations known as K2 Campaign 19. So far, no planets have been discovered in this dataset because it only yielded about a week of high-quality data. Here, we report some of the last planet discoveries made by Kepler in the Campaign 19 dataset. We conducted a visual search of the week of high-quality Campaign 19 data and identified three possible planet transits. Each planet candidate was originally identified with only one recorded transit, from which we were able to estimate the planets' radii and estimate the semimajor axes and orbital periods. Analysis of lower-quality data collected after low fuel pressure caused the telescope's pointing precision to suffer revealed additional transits for two of these candidates, allowing us to statistically validate them as genuine exoplanets. We also tentatively confirm the transits of one planet with TESS. These discoveries demonstrate Kepler's exoplanet detection power, even when it was literally running on fumes.
14 pages, 9 figures, 4 tables. Accepted for publication in MNRAS
References in corpus (22)
- The Gaia mission
- The Transiting Exoplanet Survey Satellite
- The K2 Mission: Characterization and Early results
- Most 1.6 Earth-Radius Planets are not Rocky
- How to Constrain Your M Dwarf: measuring effective temperature, bolometric luminosity, mass, and radius
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- A Technique for Extracting Highly Precise Photometry for the Two-Wheeled Kepler Mission
- Basic physical parameters of a selected sample of evolved stars
- Three regimes of extrasolar planets inferred from host star metallicities
- The Mass of Kepler-93b and The Composition of Terrestrial Planets
- 197 Candidates and 104 Validated Planets in K2's First Five Fields
- Likely Transiting Exocomets Detected by Kepler
- The population of long-period transiting exoplanets
- Characterizing K2 Planet Discoveries: A super-Earth transiting the bright K-dwarf HIP 116454
- Characterizing Undetected Stellar Companions with Combined Datasets
- TOI-222: a single-transit TESS candidate revealed to be a 34-day eclipsing binary with CORALIE, EulerCam and NGTS
- The TESS-Keck Survey I: A Warm Sub-Saturn-mass Planet and a Caution about Stray Light in TESS Cameras
- The TESS-Keck Survey. VIII. Confirmation of a Transiting Giant Planet on an Eccentric 261 day Orbit with the Automated Planet Finder Telescope
- Precision asteroseismology of the pulsating white dwarf GD 1212 using a two-wheel-controlled Kepler spacecraft
- Average Albedos of Close-in Super-Earths and Neptunes from Statistical Analysis of Long Cadence Kepler Secondary Eclipse Data
- An extremely low-density and temperate giant exoplanet
- Kepler Eclipsing Binary Stars. V. Identification of 31 Eclipsing Binaries in the K2 Engineering Data-set