The sulphur species in hot rocky exoplanet atmospheres
arXiv:2310.07701 · doi:10.1002/asna.20230075
Abstract
The first JWST observations of hot Jupiters showed an unexpected detection of SO2 in their hydrogen-rich atmospheres. We investigate how much sulphur can be expected in the atmospheres of rocky exoplanets and which sulphur molecules can be expected to be most abundant and detectable by transmission spectroscopy. We run thermo-chemical equilibrium models at the crust-atmosphere interface, considering surface temperatures 500 to 5000 K, surface pressures 1 to 100 bar, and various sets of element abundances based on common rock compositions. Between 1000 K and 2000 K, we find gaseous sulphur concentrations of up to 25 percent above the rock in our models. SO2, SO, H2S and S2 are by far the most abundant sulphur molecules. SO2 shows potentially detectable features in transmission spectra at about 4 micron, between 7 and 8 micron, and beyond 15 micron. In contrast, the sometimes abundant H2S molecule is difficult to detect in these spectra, which are mostly dominated by H2O and CO2. Although the molecule PS only occurs with concentrations below 300 ppm, it can cause a strong absorption feature between 0.3 and 0.65 micron in some of our models for high surface pressures. The detection of sulphur molecules would enable a better characterisation of the planetary surface.
Typos have been corrected compared to version 1
References in corpus (31)
- The chemical make-up of the Sun: A 2020 vision
- Early Release Science of the exoplanet WASP-39b with JWST NIRSpec PRISM
- The CHEOPS mission
- Photochemically-produced SO in the atmosphere of WASP-39b
- ExoMol molecular line lists - XVI: The rotation-vibration spectrum of hot HS
- The 2020 release of the ExoMol database: molecular line lists for exoplanet and other hot atmospheres
- ExoMol line lists -- XXXIX. Ro-vibrational molecular line list for CO
- The ExoMolOP Database: Cross-sections and k-tables for Molecules of Interest in High-Temperature Exoplanet Atmospheres
- Theoretical Emission Spectra of Atmospheres of Hot Rocky Super-Earths
- Abundant refractory sulfur in protoplanetary disks
- The ARCiS framework for Exoplanet Atmospheres: Modelling Philosophy and Retrieval
- Linking the Climate and Thermal Phase Curve of 55 Cancri e
- ExoMol molecular line lists - XXIII: spectra of PO and PS
- Sulfur Hazes in Giant Exoplanet Atmospheres: Impacts on Reflected Light Spectra
- Does a Differentiated, Carbonate-Rich, Rocky Object Pollute the White Dwarf SDSSJ104341.53+085558.2?
- Are exoplanetesimals differentiated?
- Cloud property trends in hot and ultra-hot giant gas planets (WASP-43b, WASP-103b, WASP-121b, HAT-P-7b, and WASP-18b)
- The Atmospheres of Rocky Exoplanets I. Outgassing of Common Rock and the Stability of Liquid Water
- Magma ocean evolution of the TRAPPIST-1 planets
- Arid or Cloudy: Characterizing the Atmosphere of the super-Earth 55 Cancri e using High-Resolution Spectroscopy
- Solar Elemental Abundances
- ExoMol line lists -- XLI. High-temperature molecular line lists for the alkali metal hydroxides KOH and NaOH
- Chemical Equilibrium Calculations for Bulk Silicate Earth Material at High Temperatures
- HORuS transmission spectroscopy of 55 Cnc e
- Stellar impact on disequilibrium chemistry and on observed spectra of hot Jupiter atmospheres
- Modeling synthetic spectra for transiting extrasolar giant planets: detectability of HS and PH with JWST
- The Atmospheres of Rocky Exoplanets II. Influence of surface composition on the diversity of cloud condensates
- Temperature inversions on hot super-Earths: the case of CN in nitrogen-rich atmospheres
- Cross-sections for heavy atmospheres: HO self-broadening
- Turbulent Disk Viscosity and the Bifurcation of Planet Formation Histories
- WASP-39b: exo-Saturn with patchy cloud composition, moderate metallicity, and underdepleted S/O
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- Ground-based Atmospheric Characterization of Super-Earth L 98-59 d at High Spectral Resolution
- The atmospheres of rocky exoplanets III. Using atmospheric spectra to constrain surface rock composition
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