A CHEOPS Search for Massive, Long-Period Companions to the Warm Jupiter K2-139 b
arXiv:2205.09355 · doi:10.3847/1538-3881/ac704c
Abstract
K2-139 b is a warm Jupiter with an orbital period of 28.4 d, but only three transits of this system have previously been observed, in the long-cadence mode of K2, limiting the precision with which the orbital period can be determined, and future transits predicted. We report photometric observations of four transits of K2-139 b with ESA's CHaracterising ExOPlanet Satellite (CHEOPS), conducted with the goal of measuring the orbital obliquity via spot-crossing events. We jointly fit these CHEOPS data alongside the three previously-published transits from the K2 mission, considerably increasing the precision of the ephemeris of K2-139 b. The transit times for this system can now be predicted for the next decade with a precision less than 10 minutes, compared to over one hour previously, allowing the efficient scheduling of observations with Ariel. We detect no significant deviation from a linear ephemeris, allowing us to exclude the presence of a massive outer planet orbiting with a period less than 150 d, or a brown dwarf with a period less than one year. We also determine the scaled semi-major axis, the impact parameter, and the stellar limb-darkening with improved precision. This is driven by the shorter cadence of the CHEOPS observations compared to that of K2, and validates the sub-exposure technique used for analysing long-cadence photometry. Finally, we note that the stellar spot configuration has changed from the epoch of the K2 observations; unlike the K2 transits, we detect no evidence of spot-crossing events in the CHEOPS data.
13 pages, 5 figures. Accepted for publication in The Astronomical Journal
References in corpus (14)
- The Transiting Exoplanet Survey Satellite
- The James Webb Space Telescope
- The K2 Mission: Characterization and Early results
- The CHEOPS mission
- ARIADNE: Measuring accurate and precise stellar parameters through SED fitting
- The hot dayside and asymmetric transit of WASP-189b seen by CHEOPS
- Analysis of Early Science observations with the CHaracterising ExOPlanets Satellite (CHEOPS) using pycheops
- ExoClock project II: A large-scale integrated study with 180 updated exoplanet ephemerides
- Detection of the tidal deformation of WASP-103b at with CHEOPS
- ExoClock Project: An open platform for monitoring the ephemerides of Ariel targets with contributions from the public
- Original Research By Young Twinkle Students (ORBYTS): Ephemeris Refinement of Transiting Exoplanets
- NGTS-14Ab: a Neptune-sized transiting planet in the desert
- An eclipsing M-dwarf close to the hydrogen burning limit from NGTS
- Original Research By Young Twinkle Students (ORBYTS): Ephemeris Refinement of Transiting Exoplanets II