Transient Sulfate Aerosols as a Signature of Exoplanet Volcanism
arXiv:1504.04629 · doi:10.1089/ast.2014.1204
Abstract
Geological activity is thought to be important for the origin of life and for maintaining planetary habitability. We show that transient sulfate aerosols could be a signature of exoplanet volcanism, and therefore a geologically active world. A detection of transient aerosols, if linked to volcanism, could thus aid in habitability evaluations of the exoplanet. On Earth, subduction-induced explosive eruptions inject SO2 directly into the stratosphere, leading to the formation of sulfate aerosols with lifetimes of months to years. We demonstrate that the rapid increase and gradual decrease in sulfate aerosol loading associated with these eruptions may be detectable in transit transmission spectra with future large-aperture telescopes, such as the James Webb Space Telescope (JWST) and European Extremely-Large Telescope (E-ELT) for a planetary system at a distance of 10 pc, assuming an Earth-like atmosphere, bulk composition, and size. Specifically, we find that a S/N of 12.1 and 7.1 could be achieved with E-ELT (assuming photon-limited noise) for an Earth-analog orbiting a Sun-like star and M5V star, respectively, even without multiple transits binned together. We propose that the detection of this transient signal would strongly suggest an exoplanet volcanic eruption, if potential false positives such as dust storms or bolide impacts can be ruled out. Furthermore, because scenarios exist in which O2 can form abiotically in the absence of volcanic activity, a detection of transient aerosols that can be linked to volcanism, along with a detection of O2, would be a more robust biosignature than O2 alone.
69 pages, 4 figures, Accepted to Astrobiology 4/10/2015
References in corpus (14)
- The James Webb Space Telescope
- Detection of atmospheric haze on an extrasolar planet: The 0.55 - 1.05 micron transmission spectrum of HD189733b with the Hubble Space Telescope
- The Solar Neighborhood XVII: Parallax Results from the CTIOPI 0.9m Program -- Twenty New Members of the RECONS 10 Parsec Sample
- Atmospheric Retrieval for Super-Earths: Uniquely Constraining the Atmospheric Composition with Transmission Spectroscopy
- Detailed Models of super-Earths: How well can we infer bulk properties?
- Water Vapour Absorption in the Clear Atmosphere of an exo-Neptune
- Inevitability of Plate Tectonics on Super-Earths
- Abiotic oxygen-dominated atmospheres on terrestrial habitable zone planets
- Hubble Space Telescope Near-IR Transmission Spectroscopy of the Super-Earth HD 97658b
- Abiotic Ozone and Oxygen in Atmospheres Similar to Prebiotic Earth
- Tidal Heating of Terrestrial Extra-Solar Planets and Implications for their Habitability
- Detection of Ocean Glint and Ozone Absorption Using LCROSS Earth Observations
- Titan solar occultation observations reveal transit spectra of a hazy world
- The Effects of Refraction on Transit Transmission Spectroscopy: Application to Earth-like Exoplanets
Cited by in corpus (16)
- Exoplanet Biosignatures: A Review of Remotely Detectable Signs of Life
- Exoplanet Biosignatures: Understanding Oxygen as a Biosignature in the Context of Its Environment
- How to Characterize Habitable Worlds and Signs of Life
- Exoplanet Biosignatures: A Framework for Their Assessment
- Detectability of biosignatures in anoxic atmospheres with the James Webb Space Telescope: A TRAPPIST-1e case study
- A Comparative Study of Atmospheric Chemistry with VULCAN
- Tidal heating of Earth-like exoplanets around M stars: Thermal, magnetic, and orbital evolutions
- Aerosols in Exoplanet Atmospheres
- Organic Haze as a Biosignature in Anoxic Earth-like Atmospheres
- Modeling pN2 through Geological Time: Implications for Planetary Climates and Atmospheric Biosignatures
- Sulfate Aerosol Hazes and SO2 Gas as Constraints on Rocky Exoplanets' Surface Liquid Water
- Thorium in solar twins: implications for habitability in rocky planets
- Synergies between Venus & Exoplanetary Observations
- Coexistence of CH4, CO2 and H2O in exoplanet atmospheres
- Towards a Classification Scheme for the Rocky Planets based on Equilibrium Thermodynamic Considerations
- Modeling Volcanic Plume Heights Across Exoplanet Atmospheres: Insights from TRAPPIST-1