An optical transmission spectrum of the transiting hot Jupiter in the metal-poor WASP-98 planetary system
arXiv:1606.00432 · doi:10.1093/mnras/stw1386
Abstract
The WASP-98 planetary system represents a rare case of a hot Jupiter hosted by a metal-poor main-sequence star. We present a follow-up study of this system based on multi-band photometry and high-resolution spectroscopy. Two new transit events of WASP-98b were simultaneously observed in four passbands (g,r,i,z), using the telescope-defocussing technique, yielding eight high-precision light curves with point-to-point scatters of less than 1 mmag. We also collected three spectra of the parent star with a high-resolution spectrograph, which we used to remeasure its spectral characteristics, in particular its metallicity. We found this to be very low, Fe/H]=-0.49, but larger than was previously reported, [Fe/H]=-0.60. We used these new photometric and spectroscopic data to refine the orbital and physical properties of this planetary system, finding that the stellar and planetary mass measurements are significantly larger than those in the discovery paper. In addition, the multi-band light curves were used to construct an optical transmission spectrum of WASP-98b and probe the characteristics of its atmosphere at the terminator. We measured a lower radius at z compared with the other three passbands. The maximum variation is between the r and z bands, has a confidence level of roughly 6 sigma and equates to 5.5 pressure scale heights. We compared this spectrum to theoretical models, investigating several possible types of atmospheres, including hazy, cloudy, cloud-free, and clear atmospheres with titanium and vanadium oxide opacities. We could not find a good fit to the observations, except in the extreme case of a clear atmosphere with TiO and VO opacities, in which the condensation of Ti and V was suppressed. As this case is unrealistic, our results suggest the presence of an additional optical-absorbing species in the atmosphere of WASP-98b, of unknown chemical nature.
10 pages, 4 figures, to appear in MNRAS
References in corpus (24)
- Astrophysics Source Code Library
- A continuum from clear to cloudy hot-Jupiter exoplanets without primordial water depletion
- Achieving better than 1 minute accuracy in the Heliocentric and Barycentric Julian Dates
- GROND - a 7-channel imager
- Homogeneous studies of transiting extrasolar planets. I. Light curve analyses
- Atomic and Molecular Opacities for Brown Dwarf and Giant Planet Atmospheres
- Can TiO Explain Thermal Inversions in the Upper Atmospheres of Irradiated Giant Planets?
- The Mass of KOI-94d and a Relation for Planet Radius, Mass, and Incident Flux
- Atmospheric Sulfur Photochemistry on Hot Jupiters
- Theoretical Spectra and Light Curves of Close-in Extrasolar Giant Planets and Comparison with Data
- Theoretical Spectral Models of the Planet HD 209458b with a Thermal Inversion and Water Emission Bands
- Model atmospheres of irradiated exoplanets: The influence of stellar parameters, metallicity, and the C/O ratio
- Detection of H2O and evidence for TiO/VO in an ultra hot exoplanet atmosphere
- A comparison of chemistry and dust cloud formation in ultracool dwarf model atmospheres
- Pseudo 2D chemical model of hot Jupiter atmospheres: application to HD 209458b and HD 189733b
- Homogeneous studies of transiting extrasolar planets. II. Physical properties
- A Definition for Giant Planets Based on the Mass-Density Relationship
- High-precision photometry by telescope defocussing. VI. WASP-24, WASP-25 and WASP-26
- A lower radius and mass for the transiting extrasolar planet HAT-P-8b
- High-precision photometry by telescope defocussing. VII. The ultra-short period planet WASP-103
- HATS-9b and HATS-10b: Two Compact Hot Jupiters in Field 7 of the K2 Mission
- An optical transmission spectrum of the giant planet WASP-36 b
- Physical properties of the planetary systems WASP-45 and WASP-46 from simultaneous multi-band photometry
- HATS-13b and HATS-14b: two transiting hot Jupiters from the HATSouth survey
Cited by in corpus (18)
- CERES: A Set of Automated Routines for Echelle Spectra
- Observing transiting planets with JWST -- Prime targets and their synthetic spectral observations
- Spectral and atmospheric characterization of 51 Eridani b using VLT/SPHERE
- TESS Transit Timing of Hundreds of Hot Jupiters
- Detecting isotopologues in exoplanet atmospheres using ground-based high-dispersion spectroscopy
- The GJ 504 system revisited. Combining interferometric, radial velocity, and high contrast imaging data
- ExoClock Project III: 450 new exoplanet ephemerides from ground and space observations
- Orbital alignment and starspot properties in the WASP-52 planetary system
- TraMoS V. Updated ephemeris and multi-epoch monitoring of the hot Jupiters WASP-18Ab, WASP-19b, and WASP-77Ab
- Deciphering the atmosphere of HAT-P-12b: solving discrepant results
- ExoClock project II: A large-scale integrated study with 180 updated exoplanet ephemerides
- From cold to hot irradiated gaseous exoplanets: Toward an observation-based classification scheme
- Stellar Companions to TESS Objects of Interest: A Test of Planet-Companion Alignment
- Ephemeris refinement of 21 Hot Jupiter exoplanets with high timing uncertainties
- Physical properties and transmission spectrum of the WASP-74 planetary system from multi-band photometry
- Transiting Exoplanet Monitoring Project (TEMP). II. Refined System Parameters and Transit Timing Analysis of HAT-P-33b
- Possible detection of a bimodal cloud distribution in the atmosphere of HAT-P-32\,A\,b from multi-band photometry
- A white dwarf bound to the transiting planetary system WASP-98