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Related papers: Updated Compositional Models of the TRAPPIST-1 Pla…

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The TRAPPIST-1 system provides an extraordinary opportunity to study multiple terrestrial extrasolar planets and their atmospheres. Here we use the National Center for Atmospheric Research Community Atmosphere Model version 4 to study the…

Earth and Planetary Astrophysics · Physics 2018-04-03 Eric T. Wolf

The newly detected TRAPPIST-1 system, with seven low-mass, roughly Earth-sized planets transiting a nearby ultra-cool dwarf, is one of the most important exoplanet discoveries to date. The short baseline of the available discovery…

Earth and Planetary Astrophysics · Physics 2017-04-17 Songhu Wang , Dong-Hong Wu , Thomas Barclay , Gregory P. Laughlin

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

Of the many recently discovered terrestrial exoplanets, some are expected to harbor moderate water mass fractions of a few percent. The formation pathways that can produce planets with these water mass fractions are not fully understood.…

Earth and Planetary Astrophysics · Physics 2024-08-14 Jonas Müller , Bertram Bitsch , Aaron David Schneider

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…

TRAPPIST-1 is a nearby ultra-cool dwarf that is host to a remarkable planetary system consisting of seven transiting planets. The orbital properties and radii of the planets have been well-constrained, and recently the masses of the inner…

Earth and Planetary Astrophysics · Physics 2017-06-12 Billy Quarles , Elisa V. Quintana , Eric D. Lopez , Joshua E. Schlieder , Thomas Barclay

It is still unclear whether exoplanets in compact multiplanet systems such as TRAPPIST-1 are able to accrete large quantities of volatiles, grow to sufficient mass, and maintain robust atmospheres and hydrospheres. Previous estimates of…

Earth and Planetary Astrophysics · Physics 2025-10-15 Howard Chen , Matthew S. Clement , Le-Chris Wang , Jesse T. Gu

Transiting planets orbiting M dwarfs provide the best opportunity to study the atmospheres of rocky planets with current facilities. As JWST enters its second year of science operations, an important initial endeavor is to determine whether…

Earth and Planetary Astrophysics · Physics 2023-11-30 Katie E. Teixeira , Caroline V. Morley , Bradford J. Foley , Cayman T. Unterborn

A quantitative understanding of the nature and composition of low-mass rocky (exo)planet atmospheres during their evolution is needed to interpret observations. The magma ocean stage of terrestrial- and sub-Neptune planets permits mass…

Earth and Planetary Astrophysics · Physics 2025-12-05 Dan J. Bower , Maggie A. Thompson , Kaustubh Hakim , Meng Tian , Paolo A. Sossi

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…

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

Variations in the reflective properties of the bulk material that comprises the surface of land-dominated planets will affect the planetary energy balance by interacting differently with incident radiation from the host star. Furthermore,…

Earth and Planetary Astrophysics · Physics 2020-12-02 Andrew J. Rushby , Aomawa L. Shields , Eric T. Wolf , Marysa Laguë , Adam Burgasser

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…

TRAPPIST-1 is an 0.09 $M_{\odot}$ star, which harbours a system of seven Earth-sized planets. Two main features stand out: (i) all planets have similar radii, masses, and compositions; and (ii) all planets are in resonance. Previous works…

Earth and Planetary Astrophysics · Physics 2022-02-16 Shuo Huang , Chris W. Ormel

A key feature of the Trappist-1 system is its monotonic decrease in bulk density with growing distance from the central star, which indicates an ice mass fraction that is zero in the innermost planets, b and c, and about 10\% in planets d…

Earth and Planetary Astrophysics · Physics 2024-01-30 Antoine Schneeberger , Olivier Mousis , Magali Deleuil , Jonathan I. Lunine

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

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

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 (Gillon et al. 2017) is an extremely compact planetary system: seven earth-sized planets orbit at distances lower than 0.07 AU around one of the smallest M-dwarf known in the close neighborhood of the Sun (with a mass of less…

Earth and Planetary Astrophysics · Physics 2018-10-29 Sylvain Breton , Emeline Bolmont , Gabriel Tobie , Stéphane Mathis

We study the dynamical evolution of the TRAPPIST-1 system under the influence of orbital circularization through tidal interaction with the central star. We find that systems with parameters close to the observed one evolve into a state…

Earth and Planetary Astrophysics · Physics 2018-04-25 John C. B. Papaloizou , Ewa Szuszkiewicz , Caroline Terquem