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Related papers: TRAPPIST-1 Habitable Atmosphere Intercomparison (T…

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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…

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

The TRAPPIST-1 planetary system is favourable for transmission spectroscopy and offers the unique opportunity to study rocky planets with possibly non-primary envelopes. We present here the transmission spectrum of the seventh planet of the…

Earth and Planetary Astrophysics · Physics 2022-03-14 A. Gressier , M. Mori , Q. Changeat , B. Edwards , J. P. Beaulieu , E. Marcq , B. Charnay

Three Earth-sized exoplanets were recently discovered close to the habitable zone of the nearby ultracool dwarf star TRAPPIST-1. The nature of these planets has yet to be determined, since their masses remain unmeasured and no observational…

TRAPPIST-1 e is one of a few habitable zone exoplanets that is amenable to characterization in the near term. In this study our motivations are both scientific and technical. Our technical goal is to establish a multimodel sparse sampled…

The seven approximately Earth-sized transiting planets in the \object{TRAPPIST-1} system provide a unique opportunity to explore habitable zone and non-habitable zone small planets within the same system. Its habitable zone exoplanets --…

Earth and Planetary Astrophysics · Physics 2018-10-17 Zhanbo Zhang , Yifan Zhou , Benjamin V. Rackham , Daniel Apai

TRAPPIST-1 is an ultra-cool dwarf hosting a system consisting of seven planets. While orbital properties, radii and masses of the planets are nowadays well constrained, one of the open fascinating issues is the possibility that an…

Earth and Planetary Astrophysics · Physics 2020-03-24 Antonio Vecchio , Leonardo Primavera , Fabio Lepreti , Tommaso Alberti , Vincenzo Carbone

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…

Using a 3D general circulation model, we demonstrate that a confirmed rocky exoplanet and a primary observational target, TRAPPIST-1e presents an interesting case of climate bistability. We find that the atmospheric circulation on…

Earth and Planetary Astrophysics · Physics 2022-07-26 Denis E. Sergeev , Neil T. Lewis , F. Hugo Lambert , Nathan J. Mayne , Ian A. Boutle , James Manners , Krisztian Kohary

The TRAPPIST-1 Habitable Atmosphere Intercomparison (THAI) project was initiated to compare 3D climate models that are commonly used for predicting theoretical climates of habitable zone extrasolar planets. One of the core models studied as…

Earth and Planetary Astrophysics · Physics 2022-01-25 Eric Wolf , Ravi Kopparapu , Jacob Haqq-Misra , Thomas J. Fauchez

Context. New estimates of the masses and radii of the seven planets orbiting the ultracool M-dwarf TRAPPIST-1 star permit improved modelling of their compositions, heating by tidal dissipation, and removal of tidal heat by solid-state…

Earth and Planetary Astrophysics · Physics 2019-04-03 Vera Dobos , Amy C. Barr , László L. Kiss

With seven planets, the TRAPPIST-1 system has the largest number of exoplanets discovered in a single system so far. The system is of astrobiological interest, because three of its planets orbit in the habitable zone of the ultracool M…

Earth and Planetary Astrophysics · Physics 2018-05-30 Amy C. Barr , Vera Dobos , László L. Kiss

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

The atmospheres of late M stars represent a significant challenge in the characterization of any transiting exoplanets due to the presence of strong molecular features in the stellar atmosphere. TRAPPIST-1 is an ultra-cool dwarf, host to…

The TRAPPIST-1 planetary system represents an exceptional opportunity for the atmospheric characterization of temperate terrestrial exoplanets with the upcoming James Webb Space Telescope (JWST). Assessing the potential impact of stellar…

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…

Terrestrial exoplanets such as TRAPPIST-1e will be observed in a new capacity with JWST/NIRSpec, which is expected to be able to detect CO$_2$, CH$_4$, and O$_2$ signals, if present, with multiple co-added transit observations. The…

Earth and Planetary Astrophysics · Physics 2023-01-02 Yoav Rotman , Thaddeus D. Komacek , Geronimo L. Villanueva , Thomas J. Fauchez , Erin M. May

The planetary system of TRAPPIST-1, discovered in 2016-2017, is a treasure-trove of information. Thanks to a combination of observational techniques, we have estimates of the radii and masses of the seven planets of this very exotic system.…

Earth and Planetary Astrophysics · Physics 2018-10-29 Emeline Bolmont

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

The TRAPPIST-1 system provides an exquisite laboratory for understanding exoplanetary atmospheres and interiors. Their mutual gravitational interactions leads to transit timing variations, from which Grimm et al. (2018) recently measured…

Earth and Planetary Astrophysics · Physics 2018-05-01 Gabrielle Suissa , David Kipping