A Comparative Study of Atmospheric Chemistry with VULCAN
arXiv:2108.01790 · doi:10.3847/1538-4357/ac29bc
Abstract
We present an update of the open-source photochemical kinetics code VULCAN (Tsai et al. 2017; https://github.com/exoclime/VULCAN) to include C-H-N-O-S networks and photochemistry. Additional new features are advection transport, condensation, various boundary conditions, and temperature-dependent UV cross-sections. First, we validate our photochemical model for hot Jupiter atmospheres by performing an intercomparison of HD 189733b models between Moses et al. (2011), Venot et al. (2012), and VULCAN, to diagnose possible sources of discrepancy. Second, we set up a model of Jupiter extending from the deep troposphere to upper stratosphere to verify the kinetics for low temperature. Our model reproduces hydrocarbons consistent with observations, and the condensation scheme successfully predicts the locations of water and ammonia ice clouds. We show that vertical advection can regulate the local ammonia distribution in the deep atmosphere. Third, we validate the model for oxidizing atmospheres by simulating Earth and find agreement with observations. Last, VULCAN is applied to four representative cases of extrasolar giant planets: WASP-33b, HD 189733b, GJ 436b, and 51 Eridani b. We look into the effects of the C/O ratio and chemistry of titanium/vanadium species for WASP-33b; we revisit HD 189733b for the effects of sulfur and carbon condensation; the effects of internal heating and vertical mixing () are explored for GJ 436b; we test updated planetary properties for 51 Eridani b with S condensates. We find sulfur can couple to carbon or nitrogen and impact other species such as hydrogen, methane, and ammonia. The observable features of the synthetic spectra and trends in the photochemical haze precursors are discussed for each case.
50 pages, 41 figures, accepted for publication in ApJ
References in corpus (45)
- The NumPy array: a structure for efficient numerical computation
- Water Vapor in the Spectrum of the Extrasolar Planet HD 189733b: 1. the Transit
- Possible thermochemical disequilibrium in the atmosphere of the exoplanet GJ 436b
- 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
- HAT-P-26b: A Neptune-Mass Exoplanet with a Well Constrained Heavy Element Abundance
- Five carbon- and nitrogen-bearing species in a hot giant planet's atmosphere
- Carbon monoxide and water vapor in the atmosphere of the non-transiting exoplanet HD 179949 b
- The Effects of Consistent Chemical Kinetics Calculations on the Pressure-Temperature Profiles and Emission Spectra of Hot Jupiters
- Atmospheric Circulation of Eccentric Hot Neptune GJ436b
- Forward and Inverse Modeling of the Emission and Transmission Spectrum of GJ 436b: Investigating Metal Enrichment, Tidal Heating, and Clouds
- The Atmospheric Circulation of Ultra-hot Jupiters
- The water abundance in Jupiter's equatorial zone
- Self-luminous and irradiated exoplanetary atmospheres explored with HELIOS
- Spectral Fingerprints of Earth-like Planets Around FGK Stars
- A global analysis of Spitzer and new HARPS data confirms the loneliness and metal-richness of GJ 436 b
- Theoretical transmission spectra of exoplanet atmospheres with hydrocarbon haze: Effect of creation, growth, and settling of haze particles. I. Model description and first results
- Hydrogen Cyanide in Nitrogen-Rich Atmospheres of Rocky Exoplanets
- Characterization of the hot Neptune GJ 436b with Spitzer and ground-based observations
- New chemical scheme for studying carbon-rich exoplanet atmospheres
- Photochemistry of Anoxic Abiotic Habitable Planet Atmospheres: Impact of New HO Cross-Sections
- Deep Atmosphere Composition, Structure, Origin, and Exploration, with Particular Focus on Critical in situ Science at the Icy Giants
- Sulfur Hazes in Giant Exoplanet Atmospheres: Impacts on Reflected Light Spectra
- Global 3D hydrodynamic modeling of in-transit Lyα absorption of GJ436b
- Sulfur-driven Haze Formation in Warm CO2-rich Exoplanet Atmospheres
- On the Composition of Young, Directly Imaged Giant Planets
- A new chemical scheme for giant planet thermochemistry. Update of the methanol chemistry and new reduced chemical scheme
- TESS unveils the phase curve of WASP-33b. Characterization of the planetary atmosphere and the pulsations from the star
- High-temperature measurements of VUV-absorption cross sections of CO2 and their application to exoplanets
- A Hubble PanCET Study of HAT-P-11b: A Cloudy Neptune with a Low Atmospheric Metallicity
- An HST/STIS Optical Transmission Spectrum of Warm Neptune GJ 436b
- VUV-absorption cross section of carbon dioxide from 150 to 800 K and applications to warm exoplanetary atmospheres
- Revisiting Spitzer transit observations with Independent Component Analysis: new results for the GJ436 system
- 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
- The K Dwarf Advantage for Biosignatures on Directly Imaged Exoplanets
- A reduced chemical scheme for modelling warm to hot hydrogen-dominated atmospheres
- MOVES III. Simultaneous X-ray and ultraviolet observations unveiling the variable environment of the hot Jupiter HD 189733b
- A chemical kinetics code for modelling exoplanetary atmospheres
- Is TiO emission present in the ultra-hot Jupiter WASP-33b? A reassessment using the improved ExoMol Toto line list
- A Consistent Reduced Network for HCN Chemistry in Early Earth and Titan Atmospheres: Quantum Calculations of Reaction Rate Coefficients
- 2D photochemical modeling of Saturn's stratosphere. Part I: Seasonal variation of atmospheric composition without meridional transport
- An updated visual orbit of the directly-imaged exoplanet 51 Eridani b and prospects for a dynamical mass measurement with Gaia
- Stellar impact on disequilibrium chemistry and on observed spectra of hot Jupiter atmospheres
- The GTC exoplanet transit spectroscopy survey VIII. Flat transmission spectrum for the warm gas giant WASP-80
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- Early Release Science of the exoplanet WASP-39b with JWST NIRSpec PRISM
- Early Release Science of the Exoplanet WASP-39b with JWST NIRSpec G395H
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- Early Release Science of the exoplanet WASP-39b with JWST NIRCam
- A broadband thermal emission spectrum of the ultra-hot Jupiter WASP-18b
- PICASO 3.0: A One-Dimensional Climate Model for Giant Planets and Brown Dwarfs
- Carbon monoxide emission lines reveal an inverted atmosphere in the ultra hot Jupiter WASP-33 b consistent with an eastward hot spot
- H2S and SO2 detectability in Hot Jupiters: Sulfur species as indicator of metallicity and C/O ratio
- Nitrogen as a Tracer of Giant Planet Formation. I.: A Universal Deep Adiabatic Profile and Semi-analytical Predictions of Disequilibrium Ammonia Abundances in Warm Exoplanetary Atmospheres
- The PEPSI Exoplanet Transit Survey (PETS). II. A Deep Search for Thermal Inversion Agents in KELT-20 b/MASCARA-2 b with Emission and Transmission Spectroscopy
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- A Mini-Chemical Scheme with Net Reactions for 3D GCMs I.: Thermochemical Kinetics
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