Grid of pseudo-2D chemistry models for tidally locked exoplanets -- II. The role of photochemistry
arXiv:2203.11233 · doi:10.1093/mnras/stac809
Abstract
Photochemistry is expected to change the chemical composition of the upper atmospheres of irradiated exoplanets through the dissociation of species, such as methane and ammonia, and the association of others, such as hydrogen cyanide. Although primarily the high altitude day side should be affected by photochemistry, it is still unclear how dynamical processes transport photochemical species throughout the atmosphere, and how these chemical disequilibrium effects scale with different parameters. In this work we investigate the influence of photochemistry in a two-dimensional context, by synthesizing a grid of photochemical models across a large range of temperatures. We find that photochemistry can strongly change the atmospheric composition, even up to depths of several bar in cool exoplanets. We further identify a sweet spot for the photochemical production of hydrogen cyanide and acetylene, two important haze precursors, between effective temperatures of 800 and 1400 K. The night sides of most cool planets (effective temperature < 1800 K) are shown to host photochemistry products, transported from the day side by horizontal advection. Synthetic transmission spectra are only marginally affected by photochemistry, but we suggest that observational studies probing higher altitudes, such as high-resolution spectroscopy, take photochemistry into account.
16 pages, 9 figures, accepted for publication in MNRAS
References in corpus (28)
- petitRADTRANS: a Python radiative transfer package for exoplanet characterization and retrieval
- On the radiative equilibrium of irradiated planetary atmospheres
- Detection of atmospheric haze on an extrasolar planet: The 0.55 - 1.05 micron transmission spectrum of HD189733b with the Hubble Space Telescope
- Atmospheric Sulfur Photochemistry on Hot Jupiters
- A chemical model for the atmosphere of hot Jupiters
- Dynamics and Disequilibrium Carbon Chemistry in Hot Jupiter Atmospheres, With Application to HD 209458b
- Five carbon- and nitrogen-bearing species in a hot giant planet's atmosphere
- The Effects of Consistent Chemical Kinetics Calculations on the Pressure-Temperature Profiles and Emission Spectra of Hot Jupiters
- Pseudo 2D chemical model of hot Jupiter atmospheres: application to HD 209458b and HD 189733b
- The Atmospheric Circulation of Ultra-hot Jupiters
- ExoMol molecular line lists -- XXXVII: spectra of acetylene
- Theoretical transmission spectra of exoplanet atmospheres with hydrocarbon haze: Effect of creation, growth, and settling of haze particles. I. Model description and first results
- Decomposing the Iron Cross-Correlation Signal of the Ultra-Hot Jupiter WASP-76b in Transmission using 3D Monte-Carlo Radiative Transfer
- New chemical scheme for studying carbon-rich exoplanet atmospheres
- Confirmation of Asymmetric Iron Absorption in WASP-76b with HARPS
- Influence of Stellar Flares on the Chemical Composition of Exoplanets and Spectra
- A new chemical scheme for giant planet thermochemistry. Update of the methanol chemistry and new reduced chemical scheme
- Characterizing the Near-UV Environment of M Dwarfs
- Photochemistry in hot H2-dominated exoplanet atmospheres
- Haze Evolution in Temperate Exoplanet Atmospheres Through Surface Energy Measurements
- Evidence for disequilibrium chemistry from vertical mixing in hot Jupiter atmospheres. A comprehensive survey of transiting close-in gas giant exoplanets with warm-Spitzer/IRAC
- Mineral cloud and hydrocarbon haze particles in the atmosphere of the hot Jupiter JWST target WASP-43b
- A chemical kinetics code for modelling exoplanetary atmospheres
- Investigating the detectability of hydrocarbons in exoplanet atmospheres with JWST
- Stellar impact on disequilibrium chemistry and on observed spectra of hot Jupiter atmospheres
- Lightning and charge processes in brown dwarf and exoplanet atmospheres
- Influence of C/O Ratio on Hot Jupiter Atmospheric Chemistry
- Meridional variations of CH in Jupiter's stratosphere from Juno UVS observations
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- Impact of stellar flares on the chemical composition and transmission spectra of gaseous exoplanets orbiting M dwarfs
- Hot exoplanetary atmospheres in 3D
- ARES VI: Viability of one-dimensional retrieval models for transmission spectroscopy characterization of exo-atmospheres in the era of JWST and Ariel
- Experimental Investigation of the Photochemical Production of Hydrocarbons in Warm Gas Giant Exoplanet Atmospheres