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GCM-Motivated Multidimensional Temperature Parametrization Scheme for Phasecurve Retrieval

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arxiv 2202.11439 v2 pith:BHX2KDON submitted 2022-02-23 astro-ph.EP astro-ph.IM

GCM-Motivated Multidimensional Temperature Parametrization Scheme for Phasecurve Retrieval

classification astro-ph.EP astro-ph.IM
keywords temperaturefutureoffsetplanetaryretrievalschemestructureable
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present a novel physically motivated, parametrized temperature model for phase-curve retrieval, able to self-consistently assess the variation in thermal structure in multidimensions. To develop this approach, we drew motivation from both full three-dimensional general circulation models and analytic formulations, accounting for the dominant dynamical feature of tidally locked planets, the planetary jet. Our formulation shows notable flexibility. It can generate planetary jets of various characteristics and redistribution efficiencies seen in the literature, including both standard eastward and unusual westward offset hotspots, as well as more exotic configurations for potential future observations. In our modeling scheme we utilize a tractable set of parameters efficient enough to enable future Bayesian analysis and, in addition to the resolved temperature structure, we return physical insights not yet derived from retrievals: the amplitude and the phase offset, and the location and the extent of the equatorial jet.

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  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

    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...