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Coupled atmospHere Interior modeL Intercomparison (CHILI)-Protocol Version 1.0: A CUISINES Intercomparison Project of Magma Ocean Models

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cris.virtual.department#PLACEHOLDER_PARENT_METADATA_VALUE#
cris.virtual.orcid0000-0002-5422-8794
cris.virtualsource.departmentc97ec9f5-9739-498f-842a-b56d0764f7d3
cris.virtualsource.orcidc97ec9f5-9739-498f-842a-b56d0764f7d3
dc.contributor.authorLichtenberg, Tim
dc.contributor.authorSchaefer, Laura
dc.contributor.authorKrissansen-Totton, Joshua
dc.contributor.authorMiguel, Yamila
dc.contributor.authorSergeev, Denis E.
dc.contributor.authorBaumeister, Philipp
dc.contributor.authorCmiel, Jessica
dc.contributor.authorJanssen, Leoni J.
dc.contributor.authorNguyen, T. Giang
dc.contributor.authorMiyazaki, Yoshinori
dc.contributor.authorNicholls, Harrison
dc.contributor.authorPapesh, Alexandra
dc.contributor.authorPelissard, Hugo
dc.contributor.authorPeng, Bo
dc.contributor.authorPerez, Junellie
dc.contributor.authorPostolec, Emma
dc.contributor.authorSastre, Mariana
dc.contributor.authorSalvador, Arnaud
dc.contributor.authorSpreeuw, Hanno
dc.contributor.authorZorzi, Andrea
dc.contributor.orcidext0000-0002-5422-8794
dc.contributor.orcidext0009-0009-5036-3049
dc.contributor.orcidext0009-0008-7799-7976
dc.date.accessioned2026-09-14T14:27:57Z
dc.date.available2026-09-14T14:27:57Z
dc.date.createdwos2026
dc.date.issued2026
dc.description.abstractAbstract Spectroscopic characterization of rocky exoplanets with the James Webb Space Telescope has brought the origin and evolution of their atmospheres into the focus of exoplanet science. Time-evolved models of the feedback between interior and atmosphere are critical to predict and interpret these observations and link them to the solar system terrestrial planets. However, models differ in methodologies and input data, which can lead to significant differences in interpretation. In this paper, we present the experimental protocol of the Coupled atmospHere Interior modeL Intercomparison (CHILI) project. CHILI is an (exo)planet model intercomparison project within the Climates Using Interactive Suites of Intercomparisons Nested for Exoplanet Studies (CUISINES) framework, which aims to support a diverse set of multimodel intercomparison projects in the exoplanet community. The present protocol includes the initial set of participating magma ocean models, divided into evolutionary and static models, and two types of test categories, one focused on solar system planets (Earth and Venus) and the other on exoplanets orbiting low-mass M dwarfs. Both test categories aim to quantify the evolution of key markers of the links between planetary atmospheres and interiors over geological timescales. The proposed tests would allow us to quantify and compare the differences between coupled atmosphere–interior models used by the exoplanet and planetary science communities. Results from the proposed tests will be published in dedicated follow-up papers. To encourage the community to join this comparison effort, and as an example, we present initial test results for the early Earth and TRAPPIST-1 b, conducted with models differing in the treatment of energy transport in the planetary interior and atmosphere, surface boundary layer, geochemistry, and in- and outgassing of volatile compounds.
dc.description.wosFundingTextCRediT author statements: Conceptualization: T.L., L.S., J.K.-T., Y.M., D.S., L.So. Methodology: T.L., L.S., J.K.-T., Y.M., J.C., H.N., E.P., M.S., H.P., P.B., L.N., G.N., A.S., B.P. Software: T.L., L.S., J.K.-T., Y.M., H.N., E.P., M.S., H.P., J.L., P.B., L.N., L.J., G.N., A.S., A.P., B.P. Validation: T.L., L.S., J.K.-T., Y.M. Formal analysis: H.N., A.Z., A.P., B.P. Investigation: L.J., L.S., A.P. Resources: T.L., L.S., J.K.-T., Y.M., D.S. Data Curation: T.L., L.S., J.K.-T., A.Z. Writing-Original Draft: T.L., L.S., J.K.-T., Y.M., D.S., J.C., H.N., E.P., M.S., H.P., L.J., J.P., P.B., L.N., A.Z., A.S., A.P., B.P., Y.M. Writing-Review and Editing: T.L., L.S., J.K.-T., Y.M., D.S., T.J.F., J.P., H.N., A.Z., A.S., B.P., H.P., J.L., M.M. Visualization: T.L., A.Z. Supervision: T.L., L.S., J.K.-T., Y.M., D.S., T.J.F., J.L. Project Administration: T.L., D.S. Funding Acquisition: T.L., T.J.F. CHILI belongs to the CUISINES framework, a Nexus for Exoplanet System Science (NExSS) science working group. Authors acknowledge support from the GSFC Sellers Exoplanet Environments Collaboration (SEEC), which is funded in part by the NASA Planetary Science Divisions Internal Scientist Funding Model (ISFM). We thank the Netherlands eScience Center (PROTEUS project, NLESC.-OEC.2023.017) and the Lorentz Center for funding and support in the organization of the workshop "Atmospheric and interior evolution of planetary magma oceans" in 2025 October in Leiden, during which the majority of this protocol manuscript was compiled. T.L. was supported by the Branco Weiss Foundation, the Alfred P. Sloan Foundation (AEThER project, G-2025-25284), NASA's Nexus for Exoplanet System Science research coordination network (Alien Earths project, 80NSSC21K0593), the NWO NWA-ORC PRELIFE Consortium (NWA.1630.23.013), and the European Research Council (ERC) under the European Union's Horizon Europe research and innovation program (101219807, MagmaWorlds). L.N. and P.B. are funded by the European Union (ERC, DIVERSE, 101087755). Views and opinions expressed are, however, those of the author(s) only and do not necessarily reflect those of the European Union or the European Research Council Executive Agency. Neither the European Union nor the granting authority can be held responsible for them. J.K.-T. and A.P. were supported by a NASA Astrophysics Decadal Survey Precursor Science grant 80NSSC23K1471, the Virtual Planetary Laboratory, a member of the NASA Nexus for Exoplanet System Science (NExSS), funded via the NASA Astrobiology Program grant No. 80NSSC23K1398 and the Alfred P. Sloan Foundation under grant No. 2025-25204. J.C. was supported by NSF CAREER award AST-1847120, NASA Virtual Planetary Laboratory award UWSC10439, and NSF award AGS-2210757. T.J.F. was supported by the SEEC ISFM award 2024 "The CUISINES menu for FY25 and FY26." H.N. acknowledges support from STFC grant UKRI1184. H.N. thanks the Center for Information Technology of the University of Groningen for their support and for providing access to the Habrok high-performance computing cluster. K.H. was supported by MEXT KAKENHI grant No. JP22H05150. Y.M. and L.J. acknowledge support from the European Research Council (ERC) under the European Union's Horizon 2020 research and innovation program (grant agreement No. 101088557, N-GINE). H.P. and J.L. acknowledge the support of the French Agence Nationale de la Recherche (ANR), under grant ANR-20- CE49-0009 (project SOUND), the Programme National de Planetologie (PNP), and CNES. H.P and J.L. acknowledge funding in the framework of the Investments for the Future Programme IdEx, Universite de Bordeaux/RRI ORIGINS.
dc.identifier.doi10.3847/psj/ae593b
dc.identifier.eissn2632-3338
dc.identifier.issn2632-3338
dc.identifier.urihttps://imec-publications.be/handle/20.500.12860/60370
dc.language.isoeng
dc.provenance.editstepusergreet.vanhoof@imec.be
dc.publisherIOP Publishing Ltd
dc.source.beginpage108
dc.source.issue5
dc.source.journalPLANETARY SCIENCE JOURNAL
dc.source.numberofpages19
dc.source.volume7
dc.subject.keywordsEQUATION-OF-STATE
dc.subject.keywordsEARTH
dc.subject.keywordsPLANETARY
dc.subject.keywordsSOLIDIFICATION
dc.subject.keywordsEVOLUTION
dc.subject.keywordsDYNAMICS
dc.subject.keywordsFASTCHEM
dc.subject.keywordsSTELLAR
dc.subject.keywordsZIRCONS
dc.subject.keywordsCONTEXT
dc.title

Coupled atmospHere Interior modeL Intercomparison (CHILI)-Protocol Version 1.0: A CUISINES Intercomparison Project of Magma Ocean Models

dc.typeJournal article
dspace.entity.typePublication
imec.internal.crawledAt2026-05-14
imec.internal.sourcecrawler
imec.internal.wosCreatedAt2026-09-07
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