A roadmap for the atmospheric characterization of terrestrial exoplanets with JWST
KERVELLA, Pierre
Laboratoire d'études spatiales et d'instrumentation en astrophysique = Laboratory of Space Studies and Instrumentation in Astrophysics [LESIA]
Laboratoire d'études spatiales et d'instrumentation en astrophysique = Laboratory of Space Studies and Instrumentation in Astrophysics [LESIA]
TURBET, Martin
Laboratoire d'Astrophysique de Bordeaux [Pessac] [LAB]
Laboratoire de Météorologie Dynamique (UMR 8539) [LMD]
Laboratoire d'Astrophysique de Bordeaux [Pessac] [LAB]
Laboratoire de Météorologie Dynamique (UMR 8539) [LMD]
CHARNAY, Benjamin
Laboratoire d'études spatiales et d'instrumentation en astrophysique = Laboratory of Space Studies and Instrumentation in Astrophysics [LESIA]
< Réduire
Laboratoire d'études spatiales et d'instrumentation en astrophysique = Laboratory of Space Studies and Instrumentation in Astrophysics [LESIA]
Langue
en
Article de revue
Ce document a été publié dans
Nature Astronomy. 2024-07-22, vol. 8, n° 7, p. 810-818
Nature Publishing Group
Résumé en anglais
<div><p>Ultra-cool dwarf stars are abundant, long-lived, and uniquely suited to enable the atmospheric study of transiting terrestrial companions with JWST. Amongst them, the most prominent is the M8.5V star TRAPPIST-1 and ...Lire la suite >
<div><p>Ultra-cool dwarf stars are abundant, long-lived, and uniquely suited to enable the atmospheric study of transiting terrestrial companions with JWST. Amongst them, the most prominent is the M8.5V star TRAPPIST-1 and its seven planets. While JWST Cycle 1 observations have started to yield preliminary insights into the planets, they have also revealed that their atmospheric exploration requires a better understanding of their host star. Here, we propose a roadmap to characterize the TRAPPIST-1 system-and others like it-in an efficient and robust manner with JWST. We notably recommend thatalthough more challenging to schedule-multi-transit windows be prioritized to mitigate fleck[86].</p></div>< Réduire
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