Photochemistry in Terrestrial Exoplanet Atmospheres II: H2S and SO2 Photochemistry in Anoxic Atmospheres
arXiv:1302.6603 · doi:10.1088/0004-637X/769/1/6
Abstract
Sulfur gases are common components in the volcanic and biological emission on Earth, and are expected to be important input gases for atmospheres on terrestrial exoplanets. We study the atmospheric composition and the spectra of terrestrial exoplanets with sulfur compounds (i.e., H2S and SO2) emitted from their surfaces. We use a comprehensive one-dimensional photochemistry model and radiative transfer model to investigate the sulfur chemistry in atmospheres ranging from reducing to oxidizing. The most important finding is that both H2S and SO2 are chemically short-lived in virtually all types of atmospheres on terrestrial exoplanets, based on models of H2, N2, and CO2 atmospheres. This implies that direct detection of surface sulfur emission is unlikely, as their surface emission rates need to be extremely high (>1000 times Earth's volcanic sulfur emission) for these gases to build up to a detectable level. We also find that sulfur compounds emitted from the surface lead to photochemical formation of elemental sulfur and sulfuric acid in the atmosphere, which would condense to form aerosols if saturated. For terrestrial exoplanets in the habitable zone of Sun-like stars or M stars, Earth-like sulfur emission rates result in optically thick haze composed of elemental sulfur in reducing H2-dominated atmospheres for a wide range of particle diameters (0.1-1 micron), which is assumed as a free parameter in our simulations. In oxidized atmospheres composed of N2 and CO2, optically thick haze, composed of elemental sulfur aerosols (S8) or sulfuric acid aerosols (H2SO4), will form if the surface sulfur emission is 2 orders of magnitude more than the volcanic sulfur emission of Earth. Although direct detection of H2S and SO2 by their spectral features is unlikely, their emission might be inferred by observing aerosol-related features in reflected light with future generation space telescopes.
Accepted for publication on the ApJ
References in corpus (5)
- KEPLER's First Rocky Planet: Kepler-10b
- Atmospheric Sulfur Photochemistry on Hot Jupiters
- Photochemistry in Terrestrial Exoplanet Atmospheres I: Photochemistry Model and Benchmark Cases
- The Atmospheric Signatures of Super-Earths: How to Distinguish Between Hydrogen-Rich and Hydrogen-Poor Atmospheres
- Hint of a transiting extended atmosphere on 55 Cancri b
Cited by in corpus (67)
- Exoplanet Biosignatures: A Review of Remotely Detectable Signs of Life
- Characterizing transiting exoplanet atmospheres with JWST
- Exoplanet Biosignatures: Understanding Oxygen as a Biosignature in the Context of Its Environment
- How to Characterize Habitable Worlds and Signs of Life
- ExoMol molecular line lists - XVI: The rotation-vibration spectrum of hot HS
- Exoplanetary Atmospheres - Chemistry, Formation Conditions, and Habitability
- ExoMol molecular line lists - XIV: The rotation-vibration spectrum of hot SO
- Photochemistry in Terrestrial Exoplanet Atmospheres III: Photochemistry and Thermochemistry in Thick Atmospheres on Super Earths and Mini Neptunes
- Exoplanet Biosignatures: Observational Prospects
- Biosignature Gases in H2-Dominated Atmospheres on Rocky Exoplanets
- Constraining Exoplanet Mass from Transmission Spectroscopy
- A Comparative Study of Atmospheric Chemistry with VULCAN
- Observing Exoplanets with High Dispersion Coronagraphy. I. The scientific potential of current and next-generation large ground and space telescopes
- A Chemical Kinetics Network for Lightning and Life in Planetary Atmospheres
- Exoplanet Biosignatures: Future Directions
- Phosphine as a Biosignature Gas in Exoplanet Atmospheres
- Aerosols in Exoplanet Atmospheres
- A Biomass-based Model to Estimate the Plausibility of Exoplanet Biosignature Gases
- Atmospheric Regimes and Trends on Exoplanets and Brown Dwarfs
- A Semi-Analytical Model of Visible-Wavelength Phase Curves of Exoplanets and Applications to Kepler-7 b and Kepler-10 b
- Atmospheres of Rocky Exoplanets
- Sulphur dioxide in the mid-infrared transmission spectrum of WASP-39b
- Photolytic Hazes in the Atmosphere of 51 Eri b
- Sulfidic Anion Concentrations on Early Earth for Surficial Origins-of-Life Chemistry
- HAZMAT. IV. Flares and Superflares on Young M Stars in the Far Ultraviolet
- Organic Haze as a Biosignature in Anoxic Earth-like Atmospheres
- Sulfur Hazes in Giant Exoplanet Atmospheres: Impacts on Reflected Light Spectra
- The ExoMol Atlas of Molecular Opacities
- Unveiling shrouded oceans on temperate sub-Neptunes via transit signatures of solubility equilibria vs. gas thermochemistry
- Sulfur-driven Haze Formation in Warm CO2-rich Exoplanet Atmospheres
- Transient Sulfate Aerosols as a Signature of Exoplanet Volcanism
- Sulfur Ice Astrochemistry: A Review of Laboratory Studies
- Laboratory spectra of hot molecules: data needs for hot super-Earth exoplanets
- Detectable molecular features above hydrocarbon haze via transmission spectroscopy with JWST: Case studies of GJ 1214b-, GJ 436b-, HD 97658b-, and Kepler-51b-like planets
- From cold to hot irradiated gaseous exoplanets: Fingerprints of chemical disequilibrium in atmospheric spectra
- Sulfur Chemistry in the Atmospheres of Warm and Hot Jupiters
- Implementation of disequilibrium chemistry to spectral retrieval code ARCiS and application to sixteen exoplanet transmission spectra: Indication of disequilibrium chemistry for HD 209458b and WASP-39b
- Hints of a sulfur-rich atmosphere around the 1.6 R Super-Earth L98-59 d from JWST NIRSpec G395H transmission spectroscopy
- O2- and CO-Rich Atmospheres for Potentially Habitable Environments on TRAPPIST-1 Planets
- Galactic cosmic rays on extrasolar Earth-like planets: II. Atmospheric implications
- Efficient spectroscopy of exoplanets at small angular separations with vortex fiber nulling
- Constraining the Radiation and Plasma Environment of the Kepler Circumbinary Habitable Zone Planets
- Sulfate Aerosol Hazes and SO2 Gas as Constraints on Rocky Exoplanets' Surface Liquid Water
- Atmospheric Chemistry for Astrophysicists: A Self-consistent Formalism and Analytical Solutions for Arbitrary C/O
- Information in the Reflected Light Spectra of Widely Separated Giant Exoplanets
- Chemical mapping of temperate sub-Neptune atmospheres: Constraining the deep-interior H2O/H2 using the atmospheric CO2/CH4
- Photochemical Runaway in Exoplanet Atmospheres: Implications for Biosignatures
- JWST-TST DREAMS: Secondary Atmosphere Constraints for the Habitable Zone Planet TRAPPIST-1 e
- Stability of Nitrogen in Planetary Atmospheres in Contact with Liquid Water
- Searching for Planets Orbiting Alpha Centauri A with the James Webb Space Telescope
- Photochemistry of Venus-Like Planets Orbiting K- and M-Dwarf Stars
- Chemical modeling of exoplanet atmospheres
- Atmospheric Constraints on the Surface UV Environment of Mars at 3.9 Ga Relevant to Prebiotic Chemistry
- Prebiosignature Molecules Can Be Detected in Temperate Exoplanet Atmospheres with JWST
- Alternative solvents for life: framework for evaluation, current status and future research
- Automated chemical reaction network generation and its application to exoplanet atmospheres
- Photochemical Oxygen in Non-1 Bar CO2 Atmospheres of Terrestrial Exoplanets
- Detecting Biosignatures in Nearby Rocky Exoplanets using High-Contrast Imaging and Medium-Resolution Spectroscopy with Extremely Large Telescope
- Diversity in the haziness and chemistry of temperate sub-Neptunes
- Spectropolarimetry as a Means to Address Cloud Composition and Habitability for a Cloudy Exoplanetary Atmosphere in the Habitable Zone
- Outgassing Composition of the Murchison Meteorite: Implications for Volatile Depletion of Planetesimals and Interior-atmosphere Connections for Terrestrial Exoplanets
- Can Carbon Fractionation Provide Evidence for Aerial Biospheres in the Atmospheres of Temperate Sub-Neptunes?
- Observability of ultraviolet N I lines in the atmosphere of transiting Earth-like planets
- Ground-based Atmospheric Characterization of Super-Earth L 98-59 d at High Spectral Resolution
- Maps and Masses of Transiting Exoplanets: Towards New Insights into Atmospheric and Interior Properties of Planets
- The dark and featureless surface of rocky exoplanet LHS 3844 b from JWST mid-infrared spectroscopy
- Photochemistry and Spectral Characterization of Temperate and Gas-Rich Exoplanets