Horizontal and vertical exoplanet thermal structure from a JWST spectroscopic eclipse map
arXiv:2510.24708 · doi:10.1038/s41550-025-02666-9
Abstract
Highly-irradiated giant exoplanets known as "ultra-hot Jupiters" are anticipated to exhibit large variations of atmospheric temperature and chemistry as a function of longitude, latitude, and altitude. Previous observations have hinted at these variations, but the existing data have been fundamentally restricted to probing hemisphere-integrated spectra, thereby providing only coarse information on atmospheric gradients. Here we present a spectroscopic eclipse map of an extrasolar planet, resolving the atmosphere in multiple dimensions simultaneously. We analyze a secondary eclipse of the ultra-hot Jupiter WASP-18b observed with the NIRISS instrument on JWST. The mapping reveals weaker longitudinal temperature gradients than were predicted by theoretical models, indicating the importance of hydrogen dissociation and/or nightside clouds in shaping global thermal emission. Additionally, we identify two thermally distinct regions of the planet's atmosphere: a "hotspot" surrounding the substellar point and a "ring" near the dayside limbs. The hotspot region shows a strongly inverted thermal structure due to the presence of optical absorbers and a water abundance marginally lower than the hemispheric average, in accordance with theoretical predictions. The ring region shows colder temperatures and poorly constrained chemical abundances. Similar future analyses will reveal three-dimensional thermal, chemical, and dynamical properties of a broad range of exoplanet atmospheres.
Published in Nature Astronomy. First two authors contributed equally
References in corpus (49)
- emcee: The MCMC Hammer
- MultiNest: an efficient and robust Bayesian inference tool for cosmology and particle physics
- A new extensive library of PHOENIX stellar atmospheres and synthetic spectra
- X-ray spectral modelling of the AGN obscuring region in the CDFS: Bayesian model selection and catalogue
- ExoMol molecular line lists XXX: a complete high-accuracy line list for water
- Atmospheric circulation of hot Jupiters: Coupled radiative-dynamical general circulation model simulations of HD 189733b and HD 209458b
- A Temperature and Abundance Retrieval Method for Exoplanet Atmospheres
- C/O ratio as a Dimension for Characterizing Exoplanetary Atmospheres
- Thermal structure of an exoplanet atmosphere from phase-resolved emission spectroscopy
- From thermal dissociation to condensation in the atmospheres of ultra hot Jupiters: WASP-121b in context
- 3.6 and 4.5 Micron Phase Curves and Evidence for Non-Equilibrium Chemistry in the Atmosphere of Extrasolar Planet HD 189733b
- How to Distinguish between Cloudy Mini-Neptunes and Water/Volatile-Dominated Super-Earths
- ExoMol Molecular linelists -- XXXIII. The spectrum of Titanium Oxide
- Equilibrium chemistry down to 100 K - Impact of silicates and phyllosilicates on carbon/oxygen ratio
- The Near-Infrared and Optical Spectra of Methane Dwarfs and Brown Dwarfs
- Improved HCN/HNC linelist, model atmospheres and synthetic spectra for WZ Cas
- ExoMol line lists XVIII. The high temperature spectrum of VO
- Line Intensities and Molecular Opacities of the FeH Transition
- Calculations of the Far-Wing Line Profiles of Sodium and Potassium in the Atmospheres of Substellar-Mass Objects
- TauREx III: A fast, dynamic and extendable framework for retrievals
- A Two-Dimensional Infrared Map of the Extrasolar Planet HD 189733b
- Spitzer Phase Curve Constraints for WASP-43b at 3.6 and 4.5 microns
- Towards consistent mapping of distant worlds: secondary-eclipse scanning of the exoplanet HD189733b
- The Atmospheric Circulation of Ultra-hot Jupiters
- A broadband thermal emission spectrum of the ultra-hot Jupiter WASP-18b
- On Correlated-noise Analyses Applied To Exoplanet Light Curves
- GENESIS: New Self-Consistent Models of Exoplanetary Spectra
- The cloudy shape of hot Jupiter thermal phase curves
- Atmospheric Dynamics of Hot Giant Planets and Brown Dwarfs
- Climate of an Ultra hot Jupiter: Spectroscopic phase curve of WASP-18b with HST/WFC3
- The impact of atmospheric circulation on the chemistry of the hot Jupiter HD 209458b
- Exo-Transmit: An Open-Source Code for Calculating Transmission Spectra for Exoplanet Atmospheres of Varied Composition
- Retrieval of Exoplanet Emission Spectra with HyDRA
- Understanding and Mitigating Biases when Studying Inhomogeneous Emission Spectra with JWST
- TEA: A Code for Calculating Thermochemical Equilibrium Abundances
- Exploring the Effects of Active Magnetic Drag in a GCM of the Ultra-Hot Jupiter WASP-76b
- Modeled Temperature-Dependent Clouds with Radiative Feedback in Hot Jupiter Atmospheres
- TraMoS V. Updated ephemeris and multi-epoch monitoring of the hot Jupiters WASP-18Ab, WASP-19b, and WASP-77Ab
- The Pyrat Bay Framework for Exoplanet Atmospheric Modeling: A Population Study of Hubble/WFC3 Transmission Spectra
- Mapping stellar surfaces I: Degeneracies in the rotational light curve problem
- A JWST NIRSpec Phase Curve for WASP-121b: Dayside Emission Strongest Eastward of the Substellar Point and Nightside Conditions Conducive to Cloud Formation
- A More Informative Map: Inverting Thermal Orbital Phase and Eclipse Lightcurves of Exoplanets
- Considerations for Atmospheric Retrieval of High-Precision Brown Dwarf Spectra
- An Algorithm to Compress Line-transition Data for Radiative-transfer Calculations
- H- and Dissociation in Ultra-hot Jupiters: A Retrieval Case Study of WASP-18b
- ThERESA: Three-Dimensional Eclipse Mapping with Application to Synthetic JWST Data
- The effect of interior heat flux on the atmospheric circulation of hot and ultra-hot Jupiters
- Mapping Exoplanets
- Eigenspectra: A Framework for Identifying Spectra from 3D Eclipse Mapping