No thick carbon dioxide atmosphere on the rocky exoplanet TRAPPIST-1 c

被引:0
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作者
Sebastian Zieba
Laura Kreidberg
Elsa Ducrot
Michaël Gillon
Caroline Morley
Laura Schaefer
Patrick Tamburo
Daniel D. B. Koll
Xintong Lyu
Lorena Acuña
Eric Agol
Aishwarya R. Iyer
Renyu Hu
Andrew P. Lincowski
Victoria S. Meadows
Franck Selsis
Emeline Bolmont
Avi M. Mandell
Gabrielle Suissa
机构
[1] Max-Planck-Institut für Astronomie,Leiden Observatory
[2] Leiden University,Astrobiology Research Unit
[3] Université Paris-Saclay,Department of Astronomy
[4] Université Paris Cité,Department of Earth and Planetary Sciences
[5] CEA,Department of Astronomy
[6] CNRS,The Institute for Astrophysical Research
[7] AIM,Department of Atmospheric and Oceanic Sciences
[8] University of Liège,Astrobiology Program, Department of Astronomy
[9] University of Texas at Austin,NASA Nexus for Exoplanet System Science, Virtual Planetary Laboratory Team
[10] Stanford University,School of Earth and Space Exploration
[11] Boston University,Jet Propulsion Laboratory
[12] Boston University,Division of Geological and Planetary Sciences
[13] Peking University,Laboratoire d’Astrophysique de Bordeaux
[14] Aix-Marseille Université,Centre Vie dans l’Univers
[15] CNRS,Sellers Exoplanet Environments Collaboration
[16] CNES,undefined
[17] Institut Origines,undefined
[18] LAM,undefined
[19] University of Washington,undefined
[20] University of Washington,undefined
[21] Arizona State University,undefined
[22] California Institute of Technology,undefined
[23] California Institute of Technology,undefined
[24] Université de Bordeaux,undefined
[25] CNRS,undefined
[26] B18N,undefined
[27] Observatoire Astronomique de l’Université de Genève,undefined
[28] Université de Genève,undefined
[29] NASA Goddard Space Flight Center,undefined
[30] NASA Goddard Space Flight Center,undefined
来源
Nature | 2023年 / 620卷
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摘要
Seven rocky planets orbit the nearby dwarf star TRAPPIST-1, providing a unique opportunity to search for atmospheres on small planets outside the Solar System1. Thanks to the recent launch of the James Webb Space Telescope (JWST), possible atmospheric constituents such as carbon dioxide (CO2) are now detectable2,3. Recent JWST observations of the innermost planet TRAPPIST-1 b showed that it is most probably a bare rock without any CO2 in its atmosphere4. Here we report the detection of thermal emission from the dayside of TRAPPIST-1 c with the Mid-Infrared Instrument (MIRI) on JWST at 15 µm. We measure a planet-to-star flux ratio of fp/f⁎ = 421 ± 94 parts per million (ppm), which corresponds to an inferred dayside brightness temperature of 380 ± 31 K. This high dayside temperature disfavours a thick, CO2-rich atmosphere on the planet. The data rule out cloud-free O2/CO2 mixtures with surface pressures ranging from 10 bar (with 10 ppm CO2) to 0.1 bar (pure CO2). A Venus-analogue atmosphere with sulfuric acid clouds is also disfavoured at 2.6σ confidence. Thinner atmospheres or bare-rock surfaces are consistent with our measured planet-to-star flux ratio. The absence of a thick, CO2-rich atmosphere on TRAPPIST-1 c suggests a relatively volatile-poor formation history, with less than 9.5−2.3+7.5\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${9.5}_{-2.3}^{+7.5}$$\end{document} Earth oceans of water. If all planets in the system formed in the same way, this would indicate a limited reservoir of volatiles for the potentially habitable planets in the system.
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页码:746 / 749
页数:3
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