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Enabling Robust Exoplanet Atmospheric Retrievals with Gaussian Processes

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arxiv 2503.21702 v2 pith:DTTMP2TW submitted 2025-03-27 astro-ph.EP astro-ph.IM

Enabling Robust Exoplanet Atmospheric Retrievals with Gaussian Processes

classification astro-ph.EP astro-ph.IM
keywords retrievalsbiasjwstretrievalatmosphericconstraintsexoplanetdata
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Atmospheric retrievals are essential tools for interpreting exoplanet transmission and eclipse spectra, enabling quantitative constraints on the chemical composition, aerosol properties, and thermal structure of planetary atmospheres. The James Webb Space Telescope (JWST) offers unprecedented spectral precision, resolution, and wavelength coverage, unlocking transformative insights into the formation, evolution, climate, and potential habitability of planetary systems. However, this opportunity is accompanied by challenges: modeling assumptions and unaccounted-for noise or signal sources can bias retrieval outcomes and their interpretation. To address these limitations, we introduce a Gaussian Process (GP)-aided atmospheric retrieval framework that flexibly accounts for unmodeled features and correlated noise in exoplanet spectra. We validate this method on synthetic JWST observations and show that GP-aided retrievals reduce bias in inferred abundances and better capture model-data mismatches than traditional approaches. We also introduce the concept of mean squared error to quantify the trade-off between bias and variance, arguing that this metric more accurately reflects retrieval performance than bias alone. We then reanalyze the NIRISS/SOSS JWST transmission spectrum of WASP-96 b, finding that GP-aided retrievals yield broader constraints on CO2 and H2O, possibly alleviating tension between previous retrieval results and equilibrium predictions. Our GP framework provides precise and accurate constraints while highlighting regions where models fail to explain the data. As JWST matures and future facilities come online, a deeper understanding of the limitations of both data and models will be essential, and GP-enabled retrievals like the one presented here offer a principled path forward.

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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. JWST-TST DREAMS: NIRSpec/PRISM Transmission Spectroscopy of the Habitable Zone Planet TRAPPIST-1 e

    astro-ph.EP 2025-09 conditional novelty 7.0

    Using four JWST/NIRSpec PRISM transits and a new Gaussian Process retrieval that marginalizes over stellar contamination, the authors rule out cloudy, H2-dominated (≳80% by volume) primary atmospheres on TRAPPIST-1 e at >3σ.

  2. Detectability of resolved hydrogen lines from the accretion shock at gas giants and their CPDs

    astro-ph.EP 2025-11 conditional novelty 6.0

    Shock emission from gas accreting onto PDS 70 b should make the Br-alpha line detectable with ELT/METIS in about 15 minutes, with a narrow, asymmetric profile that can constrain planet mass and radius.