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Aura-3D: A Three-dimensional Atmospheric Retrieval Framework for Exoplanet Transmission Spectra

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arxiv 2201.03532 v2 pith:AKWGUDXO submitted 2022-01-10 astro-ph.EP astro-ph.IM

classification astro-ph.EPastro-ph.IM
keywords atmosphericspectratransmissionretrievalretrievalstemperatureexoplanetframework
verification ladder T0 review T1 audit T2 compute T3 formal
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Atmospheric retrievals of exoplanet transmission spectra allow constraints on the composition and structure of the day-night terminator region. Such retrievals in the past have typically assumed one-dimensional temperature structures which were adequate to explain extant observations. However, the increasing data quality expected from exoplanet spectroscopy with JWST motivates considerations of multidimensional atmospheric retrievals. We present AURA-3D, a three-dimensional atmospheric retrieval framework for exoplanet transmission spectra. AURA-3D includes a forward model that enables rapid computation of transmission spectra in 3D geometry for a given atmospheric structure and can, therefore, be used for atmospheric retrievals as well as for computing spectra from General Circulation Models (GCMs). In order to efficiently explore the space of possible 3D temperature structures in retrievals, we develop a parametric 3D pressure-temperature profile which can accurately represent azimuthally-averaged temperature structures of a range of hot Jupiter GCMs. We apply our retrieval framework to simulated JWST observations of hot Jupiter transmission spectra, obtaining accurate estimates of the day-night temperature variation across the terminator as well as the abundances of chemical species. We demonstrate an example of a model hot Jupiter transmission spectrum for which a traditional 1D retrieval of JWST-quality data returns biased abundance estimates, whereas a retrieval including a day-night temperature gradient can accurately retrieve the true abundances. Our forward model also has the capability to include inhomogeneous chemistry as well as variable clouds/hazes. This new retrieval framework opens the field to detailed multidimensional atmospheric characterisation using transmission spectra of exoplanets in the JWST era.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. A Physically Driven Parameterisation of Multidimensional Atmospheres: Application to the JWST Phase Curve of WASP-121b

    astro-ph.EP 2026-07 conditional novelty 6.0 of 10

    A 3D temperature parameterization derived from energy-balance timescales, fit to JWST phase-curve spectra of WASP-121b, recovers a day–night asymmetric atmosphere with a nightside methane enhancement and hints of magn...

  2. The Identification of CS2 and Evidence for Carbon-Sulfur Chemical Coupling in a Warm Giant Exoplanet Atmosphere

    astro-ph.EP 2026-04 unverdicted novelty 6.0 of 10

    JWST transmission spectrum of WASP-80 b yields log10 X_CS2 = -2.25 with evidence for carbon-sulfur chemical coupling via CH2S networks.

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