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Atmospheric reconnaissance of the habitable-zone Earth-sized planets orbiting TRAPPIST-1

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Title: Atmospheric reconnaissance of the habitable-zone Earth-sized planets orbiting TRAPPIST-1
Authors: De Wit, J
Wakeford, HR
Lewis, NK
Delrez, L
Gillon, M
Selsis, F
Leconte, J
Demory, B-O
Bolmont, E
Bourrier, V
Burgasser, AJ
Grimm, S
Jehin, E
Lederer, SM
Owen, JE
Stamenkovic, V
Triaud, AHMJ
Item Type: Journal Article
Abstract: Seven temperate Earth-sized exoplanets readily amenable for atmospheric studies transit the nearby ultracool dwarf star TRAPPIST-1 (refs 1,2). Their atmospheric regime is unknown and could range from extended primordial hydrogen-dominated to depleted atmospheres3,4,5,6. Hydrogen in particular is a powerful greenhouse gas that may prevent the habitability of inner planets while enabling the habitability of outer ones6,7,8. An atmosphere largely dominated by hydrogen, if cloud-free, should yield prominent spectroscopic signatures in the near-infrared detectable during transits. Observations of the innermost planets have ruled out such signatures9. However, the outermost planets are more likely to have sustained such a Neptune-like atmosphere10, 11. Here, we report observations for the four planets within or near the system’s habitable zone, the circumstellar region where liquid water could exist on a planetary surface12,13,14. These planets do not exhibit prominent spectroscopic signatures at near-infrared wavelengths either, which rules out cloud-free hydrogen-dominated atmospheres for TRAPPIST-1 d, e and f, with significance of 8σ, 6σ and 4σ, respectively. Such an atmosphere is instead not excluded for planet g. As high-altitude clouds and hazes are not expected in hydrogen-dominated atmospheres around planets with such insolation15, 16, these observations further support their terrestrial and potentially habitable nature.
Issue Date: 5-Feb-2018
Date of Acceptance: 20-Dec-2017
URI: http://hdl.handle.net/10044/1/59061
DOI: https://dx.doi.org/10.1038/s41550-017-0374-z
ISSN: 2397-3366
Publisher: NATURE PUBLISHING GROUP
Start Page: 214
End Page: 219
Journal / Book Title: NATURE ASTRONOMY
Volume: 2
Issue: 3
Copyright Statement: © 2018 Macmillan Publishers Limited, part of Springer Nature. All rights reserved. The final publication is available at https://dx.doi.org/10.1038/s41550-017-0374-z
Sponsor/Funder: The Royal Society
Funder's Grant Number: UF150412
Keywords: Science & Technology
Physical Sciences
Astronomy & Astrophysics
ULTRACOOL DWARF STAR
EXOPLANET
SPECTROSCOPY
MASS
Publication Status: Published
Open Access location: https://arxiv.org/abs/1802.02250
Online Publication Date: 2018-02-05
Appears in Collections:Physics
Astrophysics
Faculty of Natural Sciences