Effects of UV stellar spectral uncertainty on the chemistry of terrestrial atmospheres
arXiv:2201.08805 · doi:10.3847/1538-4357/ac4d99
Abstract
The upcoming deployment of JWST will dramatically advance our ability to characterize exoplanet atmospheres, both in terms of precision and sensitivity to smaller and cooler planets. Disequilibrium chemical processes dominate these cooler atmospheres, requiring accurate photochemical modeling of such environments. The host star's UV spectrum is a critical input to these models, but most exoplanet hosts lack UV observations. For cases in which the host UV spectrum is unavailable, a reconstructed or proxy spectrum will need to be used in its place. In this study, we use the MUSCLES catalog and UV line scaling relations to understand how well reconstructed host star spectra reproduce photochemically modeled atmospheres using real UV observations. We focus on two cases; a modern Earth-like atmosphere and an Archean Earth-like atmosphere that forms copious hydrocarbon hazes. We find that modern Earth-like environments are well-reproduced with UV reconstructions, whereas hazy (Archean Earth) atmospheres suffer from changes at the observable level. Specifically, both the stellar UV emission lines and the UV continuum significantly influence the chemical state and haze production in our modeled Archean atmospheres, resulting in observable differences in their transmission spectra. Our modeling results indicate that UV observations of individual exoplanet host stars are needed to accurately characterize and predict the transmission spectra of hazy terrestrial atmospheres. In the absence of UV data, reconstructed spectra that account for both UV emission lines and continuum are the next best option, albeit at the cost of modeling accuracy.
24 pages, 17 figures. Accepted by ApJ
References in corpus (25)
- Array Programming with NumPy
- 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
- Atmospheric Sulfur Photochemistry on Hot Jupiters
- A chemical model for the atmosphere of hot Jupiters
- VULCAN: an Open-Source, Validated Chemical Kinetics Python Code for Exoplanetary Atmospheres
- Hubble PanCET: An extended upper atmosphere of neutral hydrogen around the warm Neptune GJ 3470 b
- Observing transiting planets with JWST -- Prime targets and their synthetic spectral observations
- HAZMAT I: The Evolution of Far-UV and Near-UV Emission from Early M Stars
- Pale Orange Dots: The Impact of Organic Haze on the Habitability and Detectability of Earthlike Exoplanets
- Impact of Clouds and Hazes on the Simulated JWST Transmission Spectra of Habitable Zone Planets in the TRAPPIST-1 System
- The MUSCLES Treasury Survey IV: Scaling Relations for Ultraviolet, Ca II K, and Energetic Particle Fluxes from M Dwarfs
- Detectability of atmospheric features of Earth-like planets in the habitable zone around M dwarfs
- Exo-Transmit: An Open-Source Code for Calculating Transmission Spectra for Exoplanet Atmospheres of Varied Composition
- Theoretical transmission spectra of exoplanet atmospheres with hydrocarbon haze: Effect of creation, growth, and settling of haze particles. I. Model description and first results
- Predicting the Extreme Ultraviolet Radiation Environment of Exoplanets Around Low-Mass Stars: the TRAPPIST-1 System
- SpectRes: A Fast Spectral Resampling Tool in Python
- Photochemistry of Anoxic Abiotic Habitable Planet Atmospheres: Impact of New HO Cross-Sections
- Influence of Stellar Flares on the Chemical Composition of Exoplanets and Spectra
- Chemistry of Temperate Super-Earth and Mini-Neptune Atmospheric Hazes from Laboratory Experiments
- Predicting the Extreme Ultraviolet Radiation Environment of Exoplanets Around Low-Mass Stars: GJ 832, GJ 176, GJ 436
- Impact of photochemical hazes and gases on exoplanet atmospheric thermal structure
- HAZMAT. VII. The Evolution of Ultraviolet Emission with Age and Rotation for Early M Dwarf Stars
- Lyman-alpha in the GJ 1132 System: Stellar Emission and Planetary Atmospheric Evolution
- Photoreactivity of condensed acetylene on Titan aerosols analogues
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- Exoplanet Volatile Carbon Content as a Natural Pathway for Haze Formation
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- High-energy spectra of LTT 1445A and GJ 486 reveal flares and activity
- 3D simulations of the Archean Earth including photochemical haze profiles
- Testing Lyman alpha emission line reconstruction routines at multiple velocities in one system
- 3D simulations of TRAPPIST-1e with varying CO2, CH4 and haze profiles