GASTLI: An open-source coupled interior-atmosphere model to unveil gas giant composition
Lorena Acu\~na, Laura Kreidberg, Meng Zhai, Paul Molli\`ere

TL;DR
GASTLI is an open-source Python tool that models the interior and atmospheric structure of gas giants, enabling rapid calculations of mass-radius relations and evolution, crucial for interpreting upcoming exoplanet data.
Contribution
It introduces a publicly available, efficient model coupling interior structure with atmospheric properties, validated against Solar System planets and applied to exoplanet HAT-P-26 b.
Findings
GASTLI accurately reproduces Solar System gas giants.
Application to HAT-P-26 b yields detailed interior composition.
Model differences can cause radius variations up to 10%.
Abstract
The metal mass fractions of gas giants are a powerful tool to constrain their formation mechanisms and evolution. The metal content is inferred by comparing mass and radius measurements with interior structure and evolution models. In the midst of the JWST, CHEOPS, TESS, and the forthcoming PLATO era, we are at the brink of obtaining unprecedented precision in radius, age and atmospheric metallicity measurements. To prepare for this wealth of data, we present the GAS gianT modeL for Interiors (GASTLI), an easy-to-use, publicly available Python package. The code is optimized to rapidly calculate mass-radius relations, and radius and luminosity thermal evolution curves for a variety of envelope compositions and core mass fractions. Its applicability spans planets with masses , and equilibrium temperatures K. The interior model is…
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Taxonomy
TopicsAtmospheric and Environmental Gas Dynamics · Atmospheric Ozone and Climate · Ionosphere and magnetosphere dynamics
