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Related papers: The Carbon-Deficient Evolution of TRAPPIST-1c

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Seven rocky planets orbit the nearby dwarf star TRAPPIST-1, providing a unique opportunity to search for atmospheres on small planets outside the Solar System (Gillon et al., 2017). Thanks to the recent launch of JWST, possible atmospheric…

The TRAPPIST-1 planetary system provides an unprecedented opportunity to study terrestrial exoplanet evolution with the James Webb Space Telescope (JWST) and ground-based observatories. Since M dwarf planets likely experience extreme…

Earth and Planetary Astrophysics · Physics 2018-11-07 Andrew P. Lincowski , Victoria S. Meadows , David Crisp , Tyler D. Robinson , Rodrigo Luger , Jacob Lustig-Yaeger , Giada N. Arney

The Trappist-1 planets provide a unique opportunity to test the current understanding of rocky planet evolution. The James Webb Space Telescope is expected to characterize the atmospheres of these planets, potentially detecting CO$_2$, CO,…

Earth and Planetary Astrophysics · Physics 2022-07-12 Joshua Krissansen-Totton , Jonathan J. Fortney

The TRAPPIST-1 system offers one of the best opportunities to characterize temperate terrestrial planets beyond our own solar system. Within the TRAPPIST-1 system, planet e stands out as highly likely to sustain surface liquid water if it…

The presence of an atmosphere over sufficiently long timescales is widely perceived as one of the most prominent criteria associated with planetary surface habitability. We address the crucial question as to whether the seven Earth-sized…

Earth and Planetary Astrophysics · Physics 2018-01-17 Chuanfei Dong , Meng Jin , Manasvi Lingam , Vladimir S. Airapetian , Yingjuan Ma , Bart van der Holst

In this work we aim to determine the atmospheric survivability of the TRAPPIST-1 planets by modelling the response of the upper atmosphere to incoming stellar high-energy radiation. Through this case study, we also aim to learn more about…

Earth and Planetary Astrophysics · Physics 2024-01-31 Gwenaël Van Looveren , Manuel Güdel , Sudeshna Boro Saikia , Kristina Kislyakova

JWST secondary eclipse observations of Trappist-1b seemingly disfavor atmospheres >~1 bar since heat redistribution is expected to yield dayside emission temperature below the ~500 K observed. Given the similar densities of Trappist-1…

Earth and Planetary Astrophysics · Physics 2023-07-31 Joshua Krissansen-Totton

TRAPPIST-1 is a fantastic nearby (~39.14 light years) planetary system made of at least seven transiting terrestrial-size, terrestrial-mass planets all receiving a moderate amount of irradiation. To date, this is the most observationally…

Earth and Planetary Astrophysics · Physics 2020-08-05 Martin Turbet , Emeline Bolmont , Vincent Bourrier , Brice-Olivier Demory , Jérémy Leconte , James Owen , Eric T. Wolf

Small exoplanets of nearby M dwarf stars present the possibility to find and characterize habitable worlds within the next decade. TRAPPIST-1, an ultracool M dwarf star, was recently found to have seven Earth-sized planets of predominantly…

Earth and Planetary Astrophysics · Physics 2020-01-29 Renyu Hu , Luke Peterson , Eric T. Wolf

The nearby TRAPPIST-1 planetary system is an exciting target for characterizing the atmospheres of terrestrial planets. The planets e, f and g lie in the circumstellar habitable zone and could sustain liquid water on their surfaces. During…

The signatures of planets hosted by M dwarfs are more readily detected with transit photometry and radial velocity methods than those of planets around larger stars. Recently, transit photometry was used to discover seven planets orbiting…

Solar and Stellar Astrophysics · Physics 2017-12-27 Rachael M. Roettenbacher , Stephen R. Kane

Recently, four additional Earth-mass planets were discovered orbiting the nearby ultracool M8 dwarf TRAPPIST-1, making a remarkable total of seven planets with equilibrium temperatures compatible with the presence of liquid water on their…

Solar and Stellar Astrophysics · Physics 2017-07-26 Cecilia Garraffo , Jeremy J. Drake , Ofer Cohen , Julian D. Alvarado-Gomez , Sofia P. Moschou

Recently, transmission spectroscopy in the atmospheres of the TRAPPIST-1 planets revealed flat and featureless absorption spectra, which rule out cloud-free hydrogen-dominated atmospheres. Earth-sized planets orbiting TRAPPIST-1 likely have…

Earth and Planetary Astrophysics · Physics 2020-02-12 Yasunori Hori , Masahiro Ogihara

JWST observations of the 7-planet TRAPPIST-1 system will provide an excellent opportunity to test outcomes of stellar-driven evolution of terrestrial planetary atmospheres, including atmospheric escape, ocean loss and abiotic oxygen…

Earth and Planetary Astrophysics · Physics 2024-05-07 Megan T. Gialluca , Rory Barnes , Victoria S. Meadows , Rodolfo Garcia , Jessica Birky , Eric Agol

TRAPPIST-1 planets are invaluable for the study of comparative planetary science outside our Solar System and possibly habitability. First, we derive from N-body simulations possible planetary evolution scenarios, and show that each of the…

The ultracool dwarf star TRAPPIST-1 hosts seven Earth-size transiting planets, some of which could harbour liquid water on their surfaces. UV observations are essential to measure their high-energy irradiation, and to search for…

Attempts to probe the atmospheres of rocky planets around M dwarfs present both promise and peril. While their favorable planet-to-star radius ratios enable searches for even thin secondary atmospheres, their high activity levels and…

Available JWST observations TRAPPIST-1 system have suggested that several of the planets are likely airless, or possess a very tenuous atmosphere. However, the high atmospheric escape rates expected for these planets suggest that any…

Earth and Planetary Astrophysics · Physics 2026-05-15 Megan Gialluca , Victoria Meadows , Andrew Lincowski , Trent Thomas , Parker Hinton , David Brain , David Crisp

JWST observations of the secondary eclipse of TRAPPIST-1 b at 12.8 and 15 microns revealed a very bright dayside. These measurements are consistent with an absence of atmosphere. Previous 1D atmospheric modeling also excludes -- at first…

There is a degeneracy in the interior structure between a planet that has no atmosphere and a small Fe content, and a planet that has a thin atmosphere and a higher core mass fraction. We present a self-consistent interior-atmosphere model…

Earth and Planetary Astrophysics · Physics 2023-08-30 Lorena Acuna , Magali Deleuil , Olivier Mousis
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