Hydrocarbon complexity and photochemical shielding of prebiotic feedstock molecules in exoplanet atmospheres
arXiv:2603.08172 · doi:10.1016/j.icarus.2026.117032
Abstract
The potential of prebiotic chemistry to propagate on an exoplanet fundamentally depends on whether the atmospheric conditions can facilitate the production of prebiotic feedstock molecules. Photochemical simulations of exoplanet atmospheres can be used to explore this potential atmospheric synthesis, but require a comprehensive chemical network. We present the implementation of the CRAHCN-O network, constructed to simulate the formation of feedstock molecules such as HCN, HCO, and simple hydrocarbons, into the VULCAN photochemical kinetics code. We investigate the production of feedstock molecules driven by M-star radiation and compare these to predictions by the N-C-H-O network in VULCAN, for N-dominated atmospheres with C/O ratios between 0.5-1.5. Predicted abundances are similar for C/O0.5. Once CH is included (i.e., for C/O0.5), the abundance profiles diverge in the photochemical regions. By analysing the attenuation of UV radiation, we find that hydrocarbon photochemical shielding causes the diverging profiles. CRAHCN-O accumulates CH, while N-C-H-O accumulates CH and CH. Importantly, CH is photochemically active whereas CH and CH are assumed inactive. With mixing ratios up to a few percent in CRAHCN-O, CH shields CH and CO from photodissociation and weakens the destruction of HCN and HCO. Maximum HCN mixing ratios reach 1000 ppm with CRAHCN-O compared to only 3 ppm with N-C-H-O. Other feedstock molecules like HCN and CH form more efficiently in N-C-H-O. The shielding mechanism and its impact on feedstock molecules persist for radiation from distinct M-star types. These results demonstrate the crucial role of chemical kinetics in understanding prebiotic processes in exoplanet atmospheres, including important considerations for the construction and applicability of chemical networks.
36 pages, 20 figures, accepted for publication in Icarus Special issue entitled 'Carbon in Planetary Environments: Sources and Evolution'
References in corpus (40)
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- The Pale Orange Dot: The Spectrum and Habitability of Hazy Archean Earth
- Atmospheric Sulfur Photochemistry on Hot Jupiters
- The habitability of Proxima Centauri b II. Possible climates and Observability
- Photochemically-produced SO in the atmosphere of WASP-39b
- A chemical model for the atmosphere of hot Jupiters
- Methane, Carbon Monoxide, and Ammonia in Brown Dwarfs and Self-Luminous Giant Planets
- VULCAN: an Open-Source, Validated Chemical Kinetics Python Code for Exoplanetary Atmospheres
- Tidal Locking of Habitable Exoplanets
- Origin of the RNA World: The Fate of Nucleobases in Warm Little Ponds
- 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
- The Space Weather of Proxima Centauri b
- Hydrogen Cyanide in Nitrogen-Rich Atmospheres of Rocky Exoplanets
- The interstellar chemistry of C3H and C3H2 isomers
- New chemical scheme for studying carbon-rich exoplanet atmospheres
- A new astrobiological model of the atmosphere of Titan
- The TRAPPIST-1 Habitable Atmosphere Intercomparison (THAI). Part I: Dry Cases -- The fellowship of the GCMs
- The Mega-MUSCLES Spectral Energy Distribution Of TRAPPIST-1
- On the Composition of Young, Directly Imaged Giant Planets
- Grid of Pseudo-2D Chemistry Models for Tidally-Locked Exoplanets. I. The Role of Vertical and Horizontal Mixing
- HAZMAT VI: The Evolution of Extreme Ultraviolet Radiation Emitted from Early M Star
- 3D modelling of the impact of stellar activity on tidally locked terrestrial exoplanets: atmospheric composition and habitability
- Towards RNA life on Early Earth: From atmospheric HCN to biomolecule production in warm little ponds
- 3D climate modeling of Earth-like extrasolar planets orbiting different types of host stars
- Stratosphere circulation on tidally locked ExoEarths
- A reduced chemical scheme for modelling warm to hot hydrogen-dominated atmospheres
- Ozone chemistry on tidally locked M dwarf planets
- Is ozone a reliable proxy for molecular oxygen? I. The O2-O3 relationship for Earth-like atmospheres
- A Mini-Chemical Scheme with Net Reactions for 3D GCMs II. 3D thermochemical modelling of WASP-39b and HD 189733b
- A Consistent Reduced Network for HCN Chemistry in Early Earth and Titan Atmospheres: Quantum Calculations of Reaction Rate Coefficients
- Variability due to climate and chemistry in observations of oxygenated Earth-analogue exoplanets
- Lightning-induced chemistry on tidally-locked Earth-like exoplanets
- A Mini-Chemical Scheme with Net Reactions for 3D GCMs I.: Thermochemical Kinetics
- An experimental and theoretical investigation of HCN production in the Hadean Earth atmosphere
- Prebiosignature Molecules Can Be Detected in Temperate Exoplanet Atmospheres with JWST
- Variability in Titan's Mesospheric HCN and Temperature Structure as Observed by ALMA
- 3D simulations of TRAPPIST-1e with varying CO2, CH4 and haze profiles
- Self-Shielding Enhanced Organics Synthesis in an Early Reduced Earth's Atmosphere
- DARWEN: Data-driven Algorithm for Reduction of Wide Exoplanetary Networks