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Nightside clouds and disequilibrium chemistry on the hot Jupiter WASP-43b

Title: Nightside clouds and disequilibrium chemistry on the hot Jupiter WASP-43b
Authors: TJ Bell; N Crouzet; PE Cubillos; L Kreidberg; AAA Piette; MT Roman; JK Barstow; J Blecic; L Carone; L-P Coulombe; E Ducrot; M Hammond; JM Mendonca; JI Moses; V Parmentier; KB Stevenson; L Teinturier; M Zhang; NM Batalha; JL Bean; B Benneke; B Charnay; KL Chubb; B-O Demory; P Gao; EKH Lee; M Lopez-Morales; G Morello; E Rauscher; DK Sing; X Tan; O Venot; HR Wakeford; K Aggarwal; E-M Ahrer; MK Alam; R Baeyens; D Barrado; C Caceres; AL Carter; SL Casewell; RC Challener; IJM Crossfield; J-M Desert; I Dobbs-Dixon; A Dyrek; N Espinoza; AD Feinstein; NP Gibson; J Harrington; C Helling; R Hu; N Iro; E M-R Kempton; S Kendrew; TD Komacek; J Krick; P-O Lagage; J Leconte; M Lendl; NT Lewis; JD Lothringer; I Malsky; L Mancini; M Mansfield; NJ Mayne; T Mikal-Evans; K Molaverdikhani; NK Nikolov; MC Nixon; E Palle; DJM Petit dit de la Roche; C Piaulet; D Powell; BV Rackham; AD Schneider; ME Steinrueck; J Taylor; L Welbanks; SN Yurchenko; X Zhang; S Zieba
Publication Year: 2024
Collection: Erasmus University Rotterdam (EUR): Figshare
Subject Terms: No keyword
Description: Hot Jupiters are among the best-studied exoplanets, but it is still poorly understood how their chemical composition and cloud properties vary with longitude. Theoretical models predict that clouds may condense on the nightside and that molecular abundances can be driven out of equilibrium by zonal winds. Here we report a phase-resolved emission spectrum of the hot Jupiter WASP-43b measured from 5–12 µm with JWST’s Mid-Infrared Instrument (MIRI). The spectra reveal a large day–night temperature contrast (with average brightness temperatures of 1524 ± 35 and 863 ± 23 Kelvin, respectively) and evidence for water absorption at all orbital phases. Comparisons with three-dimensional atmospheric models show that both the phase curve shape and emission spectra strongly suggest the presence of nightside clouds which become optically thick to thermal emission at pressures greater than ∼100 mbar. The dayside is consistent with a cloudless atmosphere above the mid-infrared photosphere. Contrary to expectations from equilibrium chemistry but consistent with disequilibrium kinetics models, methane is not detected on the nightside (2σ upper limit of 1–6 parts per million, depending on model assumptions).
Document Type: article in journal/newspaper
Language: unknown
Relation: 10871/135097
Availability: https://figshare.com/articles/journal_contribution/Nightside_clouds_and_disequilibrium_chemistry_on_the_hot_Jupiter_WASP-43b/29807567
Rights: CC BY
Accession Number: edsbas.D6C8D47F
Database: BASE