Tracing bulk elemental ratios in exoplanetary atmospheres with TiO chemistry
arXiv:2007.01066 · doi:10.1051/0004-6361/202038186
Abstract
Knowing the bulk elemental abundances of an exoplanetary atmosphere is not an easy task, but it is crucial to understand the formation history of planets. The purpose of this work is to show that the observability of TiO features at optical wavelengths in the transmission spectra of hot Jupiter atmospheres is sensitive to the bulk chemical properties of the atmosphere. For that, we run a grid of chemical models which include TiO formation and destruction, for the ultra-hot Jupiter WASP-19b and an ultra-hot version of HD~209458b. We take into account non-equilibrium chemistry and changes in the temperature and pressure structure of these atmospheres caused by different C/O ratios. We calculate synthetic transmission spectra for these models, and study the relative strengths of TiO and \ce{H2O} features quantitatively. To compare with observations, we use a model independent metric for molecular abundances, that has been previously used in observational studies of exoplanetary atmospheres. We find that with this metric we can differentiate between different chemical models and place constraints on the atmosphere's bulk carbon and oxygen abundance. From chemical considerations we expected that the TiO abundance would depend on the bulk nitrogen, however found that any change to N/H did not result in changes to the resulting TiO. We apply our method to a set of known exoplanets that have been observed in the relevant optical wavelengths and find good agreement between low resolution observations and our model for WASP-121b, marginally good agreement with WASP-79b, WASP-76b, and WASP-19b, and poorer agreement with HD 209458b. Our method can be particularly helpful for indirect studies of the bulk abundances of carbon and oxygen.
14 pages, 13 figures, accepted for publication in A&A
References in corpus (26)
- petitRADTRANS: a Python radiative transfer package for exoplanet characterization and retrieval
- A Precise Water Abundance Measurement for the Hot Jupiter WASP-43b
- The imprint of exoplanet formation history on observable present-day spectra of hot Jupiters
- Towards Chemical Constraints on Hot Jupiter Migration
- HST hot-Jupiter transmission spectral survey: detection of potassium in WASP-31b along with a cloud deck and Rayleigh scattering
- VULCAN: an Open-Source, Validated Chemical Kinetics Python Code for Exoplanetary Atmospheres
- Observing transiting planets with JWST -- Prime targets and their synthetic spectral observations
- Detection of titanium oxide in the atmosphere of a hot Jupiter
- Forward and Inverse Modeling of the Emission and Transmission Spectrum of GJ 436b: Investigating Metal Enrichment, Tidal Heating, and Clouds
- TiO and VO broad band absorption features in the optical spectrum of the atmosphere of the hot-Jupiter HD209458b
- Discovery of water at high spectral resolution in the atmosphere of 51 Peg b
- Peering into the formation history of beta Pictoris b with VLTI/GRAVITY long baseline interferometry
- Jupiter's composition suggests its core assembled exterior to the N2 snowline
- Rayleigh scattering by H2 in the extrasolar planet HD209458b
- Disk evolution, element abundances and cloud properties of young gas giant planets
- Composition of Early Planetary Atmospheres I: Connecting Disk Astrochemistry to the Formation of Planetary Atmospheres
- New Avenues for Thermal Inversions in hot Jupiters
- Connecting planet formation and astrochemistry: A main sequence for C/O in hot-exoplanetary atmospheres
- Grain opacity and the bulk composition of extrasolar planets. I. Results from scaling the ISM opacity
- ARES I: WASP-76 b, A Tale of Two HST Spectra
- Sparkling nights and very hot days on WASP-18b: the formation of clouds and the emergence of an ionosphere
- Jupiter formed as a pebble pile around the N ice line
- Connecting planet formation and astrochemistry: Refractory carbon depletion leading to super-stellar C/O in giant planetary atmospheres
- The Metal-Rich Atmosphere of the Neptune HAT-P-26b
- UV Exoplanet Transmission Spectral Features as Probes of Metals and Rainout
- A chemical kinetics code for modelling exoplanetary atmospheres