ThERESA: Three-Dimensional Eclipse Mapping with Application to Synthetic JWST Data
arXiv:2110.08159 · doi:10.3847/1538-3881/ac4885
Abstract
Spectroscopic eclipse observations, like those possible with the James Webb Space Telescope, should enable 3D mapping of exoplanet daysides. However, fully-flexible 3D planet models are overly complex for the data and computationally infeasible for data-fitting purposes. Here, we present ThERESA, a method to retrieve the 3D thermal structure of an exoplanet from eclipse observations by first retrieving 2D thermal maps at each wavelength and then placing them vertically in the atmosphere. This approach allows the 3D model to include complex thermal structures with a manageable number of parameters, hastening fit convergence and limiting overfitting. An analysis runs in a matter of days. We enforce consistency of the 3D model by comparing vertical placement of the 2D maps with their corresponding contribution functions. To test this approach, we generated a synthetic JWST NIRISS-like observation of a single hot-Jupiter eclipse using a global circulation model of WASP-76b and retrieved its 3D thermal structure. We find that a model which places the 2D maps at different depths depending on latitude and longitude is preferred over a model with a single pressure for each 2D map, indicating that ThERESA is able to retrieve 3D atmospheric structure from JWST observations. We successfully recover the temperatures of the planet's dayside, the eastward shift of its hotspot, and the thermal inversion. ThERESA is open-source and publicly available as a tool for the community.
21 pages, 15 figures. Accepted for publication in The Astronomical Journal
References in corpus (16)
- Array Programming with NumPy
- Line and Mean Opacities for Ultracool Dwarfs and Extrasolar Planets
- Multi-Wavelength Constraints on the Day-Night Circulation Patterns of HD 189733b
- The 2020 release of the ExoMol database: molecular line lists for exoplanet and other hot atmospheres
- On Correlated-noise Analyses Applied To Exoplanet Light Curves
- The Impact of Non-Uniform Thermal Structure on the Interpretation of Exoplanet Emission Spectra
- Exo-Transmit: An Open-Source Code for Calculating Transmission Spectra for Exoplanet Atmospheres of Varied Composition
- Exploring the Effects of Active Magnetic Drag in a GCM of the Ultra-Hot Jupiter WASP-76b
- ACCESS & LRG-BEASTS: a precise new optical transmission spectrum of the ultrahot Jupiter WASP-103b
- EXOPLINES: Molecular Absorption Cross-Section Database for Brown Dwarf and Giant Exoplanet Atmospheres
- Cloud property trends in hot and ultra-hot giant gas planets (WASP-43b, WASP-103b, WASP-121b, HAT-P-7b, and WASP-18b)
- Modeling the effects of inhomogeneous aerosols on the hot Jupiter Kepler-7b's atmospheric circulation
- The Hubble WFC3 Emission Spectrum of the Extremely-Hot Jupiter, KELT-9b
- Wavelength Does Not Equal Pressure: Vertical Contribution Functions and their Implications for Mapping Hot Jupiters
- Toward More Reliable Analytic Thermochemical-equilibrium Abundances
- An Open-Source Bayesian Atmospheric Radiative Transfer (BART) Code: I. Design, Tests, and Application to Exoplanet HD 189733 b
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- A Lack of Variability Between Repeated Spitzer Phase Curves of WASP-43b
- JWST-TST DREAMS: Non-Uniform Dayside Emission for WASP-17b from MIRI/LRS
- Warm Jupiters Beyond the Tidal Synchronization Limit May Exhibit a Wide Range of Secondary Eclipse Depths
- Horizontal and vertical exoplanet thermal structure from a JWST spectroscopic eclipse map
- Radiative Transfer and Inversion codes for characterizing planetary atmospheres: an overview
- Planet Eclipse Mapping with Long-Term Baseline Drifts