Evaluating the Plausible Range of N2O Biosignatures on Exo-Earths: An Integrated Biogeochemical, Photochemical, and Spectral Modeling Approach
arXiv:2210.01669 · doi:10.3847/1538-4357/ac8cfb
Abstract
Nitrous oxide (N2O) -- a product of microbial nitrogen metabolism -- is a compelling exoplanet biosignature gas with distinctive spectral features in the near- and mid-infrared, and only minor abiotic sources on Earth. Previous investigations of N2O as a biosignature have examined scenarios using Earthlike N2O mixing ratios or surface fluxes, or those inferred from Earth's geologic record. However, biological fluxes of N2O could be substantially higher, due to a lack of metal catalysts or if the last step of the denitrification metabolism that yields N2 from N2O had never evolved. Here, we use a global biogeochemical model coupled with photochemical and spectral models to systematically quantify the limits of plausible N2O abundances and spectral detectability for Earth analogs orbiting main-sequence (FGKM) stars. We examine N2O buildup over a range of oxygen conditions (1%-100% present atmospheric level) and N2O fluxes (0.01-100 teramole per year; Tmol = 10^12 mole) that are compatible with Earth's history. We find that N2O fluxes of 10 [100] Tmol yr would lead to maximum N2O abundances of ~5 [50] ppm for Earth-Sun analogs, 90 [1600] ppm for Earths around late K dwarfs, and 30 [300] ppm for an Earthlike TRAPPIST-1e. We simulate emission and transmission spectra for intermediate and maximum N2O concentrations that are relevant to current and future space-based telescopes. We calculate the detectability of N2O spectral features for high-flux scenarios for TRAPPIST-1e with JWST. We review potential false positives, including chemodenitrification and abiotic production via stellar activity, and identify key spectral and contextual discriminants to confirm or refute the biogenicity of the observed N2O.
22 pages, 17 figures; ApJ, 937, 109
References in corpus (57)
- Array Programming with NumPy
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- The origins and concentrations of water, carbon, nitrogen and noble gases on Earth
- Extreme Water Loss and Abiotic O Buildup On Planets Throughout the Habitable Zones of M Dwarfs
- The Pale Orange Dot: The Spectrum and Habitability of Hazy Archean Earth
- Stellar Abundances in the Solar Neighborhood: The Hypatia Catalog
- How to Characterize Habitable Worlds and Signs of Life
- Observing the Atmospheres of Known Temperate Earth-sized Planets with JWST
- The habitability of Proxima Centauri b. I. Irradiation, rotation and volatile inventory from formation to the present
- The Detectability and Characterization of the TRAPPIST-1 Exoplanet Atmospheres with JWST
- Chemical abundances of 1111 FGK stars from the HARPS GTO planet search program II: Cu, Zn, Sr, Y, Zr, Ba, Ce, Nd and Eu
- Abiotic Ozone and Oxygen in Atmospheres Similar to Prebiotic Earth
- Disequilibrium biosignatures over Earth history and implications for detecting exoplanet life
- HAZMAT I: The Evolution of Far-UV and Near-UV Emission from Early M Stars
- A Catalog of Kepler Habitable Zone Exoplanet Candidates
- The Habitable Zones of Pre-Main-Sequence Stars
- The Habitable Exoplanet Observatory (HabEx) Mission Concept Study Final Report
- Spectral Fingerprints of Earth-like Planets Around FGK Stars
- UV Surface Environment of Earth-like Planets Orbiting FGKM Stars Through Geological Evolution
- Impact of Clouds and Hazes on the Simulated JWST Transmission Spectra of Habitable Zone Planets in the TRAPPIST-1 System
- A candidate short-period sub-Earth orbiting Proxima Centauri
- Phosphine as a Biosignature Gas in Exoplanet Atmospheres
- Detectability of atmospheric features of Earth-like planets in the habitable zone around M dwarfs
- Predicting the Extreme Ultraviolet Radiation Environment of Exoplanets Around Low-Mass Stars: the TRAPPIST-1 System
- Nitrogen Oxide Concentrations in Natural Waters on Early Earth
- Searching for Earth analogues around the nearest stars: the disk age-metallicity relation and the age distribution in the Solar Neighbourhood
- Photochemistry of Anoxic Abiotic Habitable Planet Atmospheres: Impact of New HO Cross-Sections
- A Review of Exoplanetary Biosignatures
- Modeling pN2 through Geological Time: Implications for Planetary Climates and Atmospheric Biosignatures
- The Role of N2 as a Geo-Biosignature for the Detection and Characterization of Earth-like Habitats
- TRAPPIST-1: Global Results of the Spitzer Exploration Science Program {\it Red Worlds}
- Atmospheric convection plays a key role in the climate of tidally-locked terrestrial exoplanets: insights from high-resolution simulations
- Sensitivity of Biosignatures on Earth-like Planets orbiting in the Habitable Zone of Cool M-Dwarf Stars to varying Stellar UV Radiation and Surface Biomass Emissions
- HAZMAT VI: The Evolution of Extreme Ultraviolet Radiation Emitted from Early M Star
- A Limited Habitable Zone for Complex Life
- Predicting the Extreme Ultraviolet Radiation Environment of Exoplanets Around Low-Mass Stars: GJ 832, GJ 176, GJ 436
- Origins Space Telescope Mission Concept Study Report
- Sensitive Probing of Exoplanetary Oxygen via Mid Infrared Collisional Absorption
- The White Dwarf Opportunity: Robust Detections of Molecules in Earth-like Exoplanet Atmospheres with the James Webb Space Telescope
- O2- and CO-Rich Atmospheres for Potentially Habitable Environments on TRAPPIST-1 Planets
- Distinguishing between wet and dry atmospheres of TRAPPIST-1 e and f
- The K Dwarf Advantage for Biosignatures on Directly Imaged Exoplanets
- Rethinking CO Antibiosignatures in the Search for Life Beyond the Solar System
- Effects of UV stellar spectral uncertainty on the chemistry of terrestrial atmospheres
- Ozone chemistry on tidally locked M dwarf planets
- Understanding planetary context to enable life detection on exoplanets and test the Copernican principle
- Differentiating Modern and Prebiotic Earth Scenarios for TRAPPIST-1e: High-resolution Transmission Spectra and Predictions for JWST
- Life as the Only Reason for the Existence of N2-O2-Dominated Atmospheres
- Detecting Proxima b's atmosphere with JWST targeting CO2 at 15 micron using a high-pass spectral filtering technique
- Theoretical Reflectance Spectra of Earth-Like Planets through Their Evolutions: Impact of Clouds on the Detectability of Oxygen, Water, and Methane with Future Direct Imaging Missions
- Probing the capability of future direct imaging missions to spectrally constrain the frequency of Earth-like planets
- Detectability of biosignatures on LHS 1140 b
- TESS Habitable Zone Star Catalog
- Photochemical Runaway in Exoplanet Atmospheres: Implications for Biosignatures
- Climate sensitivity to ozone and its relevance on the habitability of Earth-like planets
- Life Beyond the Solar System: Space Weather and Its Impact on Habitable Worlds