Pseudo-2D Modelling of Heat Redistribution Through H Thermal Dissociation/Recombination: Consequences for Ultra-Hot Jupiters
arXiv:2104.14376 · doi:10.1093/mnras/stab1256
Abstract
Thermal dissociation and recombination of molecular hydrogen, H_2, in the atmospheres of ultra-hot Jupiters (UHJs) has been shown to play an important role in global heat redistribution. This, in turn, significantly impacts their planetary emission, yet only limited investigations on the atmospheric effects have so far been conducted. Here we investigate the heat redistribution caused by this dissociation/recombination reaction, alongside feedback mechanisms between the atmospheric chemistry and radiative transfer, for a planetary and stellar configuration typical of UHJs. To do this, we have developed a time-dependent pseudo-2D model, including a treatment of time-independent equilibrium chemical effects. As a result of the reaction heat redistribution, we find temperature changes of up to 400 K in the atmosphere. When TiO and VO are additionally considered as opacity sources, these changes in temperature increase to over 800 K in some areas. This heat redistribution is found to significantly shift the region of peak atmospheric temperature, or hotspot, towards the evening terminator in both cases. The impact of varying the longitudinal wind speed on the reaction heat distribution is also investigated. When excluding TiO/VO, increased wind speeds are shown to increase the impact of the reaction heat redistribution up to a threshold wind speed. When including TiO/VO there is no apparent wind speed threshold, due to thermal stabilisation by these species. We also construct pseudo-2D phase curves from our model, and highlight both significant spectral flux damping and increased phase offset caused by the reaction heat redistribution.
Accepted in MNRAS
References in corpus (23)
- An ultrahot gas-giant exoplanet with a stratosphere
- Fingering convection and cloudless models for cool brown dwarf atmospheres
- ExoMol line lists XVIII. The high temperature spectrum of VO
- The Complete transmission spectrum of WASP-39b with a precise water constraint
- 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
- TiO and VO broad band absorption features in the optical spectrum of the atmosphere of the hot-Jupiter HD209458b
- Self-luminous and irradiated exoplanetary atmospheres explored with HELIOS
- Atomic and Molecular Data for Optical Stellar Spectroscopy
- GENESIS: New Self-Consistent Models of Exoplanetary Spectra
- Treatment of overlapping gaseous absorption with the correlated-k method in hot Jupiter and brown dwarf atmosphere models
- The cloudy shape of hot Jupiter thermal phase curves
- Magnetic Effects in Hot Jupiter Atmospheres
- The UK Met Office GCM with a sophisticated radiation scheme applied to the hot Jupiter HD 209458b
- Toward the analysis of JWST exoplanet spectra: Identifying troublesome model parameters
- Evidence for H Dissociation and Recombination Heat Transport in the Atmosphere of KELT-9b
- Confirmation of water emission in the dayside spectrum of the ultrahot Jupiter WASP-121b
- A Library of Self-Consistent Simulated Exoplanet Atmospheres
- Precise photometric transit follow-up observations of five close-in exoplanets : update on their physical properties
- Hubble PanCET: An isothermal day-side atmosphere for the bloated gas-giant HAT-P-32Ab
- The carbon-to-oxygen ratio: implications for the spectra of hydrogen-dominated exoplanet atmospheres
- Clouds in Exoplanetary Atmospheres
Cited by in corpus (17)
- Five key exoplanet questions answered via the analysis of 25 hot Jupiter atmospheres in eclipse
- TOI-2109b: An Ultrahot Gas Giant on a 16 hr Orbit
- Grid of pseudo-2D chemistry models for tidally locked exoplanets -- II. The role of photochemistry
- Keck/KPIC Emission Spectroscopy of WASP-33b
- Exoplanet weather and climate regimes with clouds and thermal ionospheres: A model grid study in support of large-scale observational campaigns
- Hot Jupiter Diversity and the Onset of TiO/VO Revealed by a Large Grid of Non-Grey Global Circulation Models
- Variable and super-sonic winds in the atmosphere of an ultra-hot giant planet
- A Mini-Chemical Scheme with Net Reactions for 3D GCMs I.: Thermochemical Kinetics
- The effect of interior heat flux on the atmospheric circulation of hot and ultra-hot Jupiters
- Time Resolved Absorption of Six Chemical Species With MAROON-X Points to Strong Drag in the Ultra Hot Jupiter TOI-1518 b
- Physically-motivated basis functions for temperature maps of exoplanets
- Temperature-chemistry coupling in the evolution of gas giant atmospheres driven by stellar flares
- Photodissociation and induced chemical asymmetries on ultra-hot gas giants. A case study of HCN on WASP-76 b
- Retrieving day- and nightside atmospheric properties of the ultra-hot Jupiter TOI-2109b. Detection of Fe and CO emission lines and evidence for inefficient heat transport
- Lessons from Hubble and Spitzer: 1D Self-Consistent Model Grids for 19 Hot Jupiter Emission Spectra
- Quantifying thermal water dissociation in the dayside photosphere of WASP-121 b using NIRPS
- Patchy nightside clouds on ultra-hot Jupiters: General Circulation Model simulations with radiatively active cloud tracers