A white dwarf bound to the transiting planetary system WASP-98
arXiv:2008.02533 · doi:10.1093/mnras/staa2328
Abstract
WASP-98 is a planetary system containing a hot Jupiter transiting a late-G dwarf. A fainter star 12 arcsec distant has previously been identified as a white dwarf, with a distance and proper motion consistent with a physical association with the planetary system. We present spectroscopy of the white dwarf, with the aim of determining its mass, radius and temperature and hence the age of the system. However, the spectra show the featureless continuum and lack of spectral lines characteristic of the DC class of white dwarfs. We therefore fitted theoretical white dwarf spectra to the ugriz apparent magnitudes and Gaia DR2 parallax of this object in order to determine its physical properties and the age of the system. We find that the system is old, with a lower limit of 3.6 Gyr, but theoretical uncertainties preclude a precise determination of its age. Its kinematics are consistent with membership of the thick disc, but do not allow us to rule out the thin-disc alternative. The old age and low metallicity of the system suggest it is subject to an age-metallicity relation, but analysis of the most metal-rich and metal-poor transiting planetary systems yields only insubstantial evidence of this. We conclude that the study of bound white dwarfs can yield independent ages to planetary systems, but such analysis may be better-suited to DA and DB rather than DC white dwarfs.
Accepted for publication in MNRAS. 7 pages, 1 table, 5 colour figures
References in corpus (18)
- The Gaia mission
- New constraints on the chemical evolution of the solar neighbourhood and Galactic disc(s). Improved astrophysical parameters for the Geneva-Copenhagen Survey
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- The Initial-Final Mass Relation: Direct Constraints at the Low Mass End
- Properties of planets in binary systems. The role of binary separation
- On the Measurement of Fundamental Parameters of White Dwarfs in the Gaia Era
- Homogeneous studies of transiting extrasolar planets. II. Physical properties
- Friends of Hot Jupiters. IV. Stellar companions beyond 50 AU might facilitate giant planet formation, but most are unlikely to cause Kozai-Lidov migration
- Indications for an influence of Hot Jupiters on the rotation and activity of their host stars
- A comparison of gyrochronological and isochronal age estimates for transiting exoplanet host stars
- The Canada-France Imaging Survey: Reconstructing the Milky Way Star Formation History from its White Dwarf Population
- Bayesian mass and age estimates for transiting exoplanet host stars
- The Two-Colour EMCCD Instrument for the Danish 1.54m Telescope and SONG
- Orbital and Evolutionary Constraints on the Planet Hosting Binary GJ 86 from the Hubble Space Telescope
- On the dynamics and collisional growth of planetesimals in misaligned binary systems
- Frequency of Planets in Binaries
- WASP-20 is a close visual binary with a transiting hot Jupiter
- Six newly-discovered hot Jupiters transiting F/G stars: WASP-87b, WASP-108b, WASP-109b, WASP-110b, WASP-111b & WASP-112b