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Related papers: Interior Structures and Tidal Heating in the TRAPP…

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The internal thermal and magnetic evolution of rocky exoplanets is critical to their habitability. We focus on the thermal-orbital evolution of Earth-mass planets around low mass M stars whose radiative habitable zone overlaps with the…

Earth and Planetary Astrophysics · Physics 2015-09-25 Peter Driscoll , Rory Barnes

The TRAPPIST-1 system is home to at least seven terrestrial planets and is a target of interest for future James Webb Space Telescope (JWST) observations. Additionally, these planets will be of interest to future missions making…

Earth and Planetary Astrophysics · Physics 2022-07-26 Kathleen Mandt , Adrienn Luspay-Kuti , Jacob Lustig-Yaeger , Ryan Felton , Shawn Domagal-Goldman

TRAPPIST-1 is a nearby 0.08 M M-star, which was recently found to harbor a planetary system of at least seven Earth-mass planets, all within 0.1 au. The configuration confounds theorists as the planets are not easily explained by either in…

Earth and Planetary Astrophysics · Physics 2017-07-26 Chris Ormel , Beibei Liu , Djoeke Schoonenberg

The recent discovery of seven potentially habitable Earth-size planets around the ultra-cool star TRAPPIST-1 has further fueled the hunt for extraterrestrial life. Current methods focus on closely monitoring the host star to look for…

Popular Physics · Physics 2017-04-03 M. Turbo-King , B. R. Tang , Z. Habeertable , M. C. Chouffe , B. Exquisit , L. Keg-beer

To date, two planetary systems have been discovered with close-in, terrestrial-mass planets (< 5-10 Earth masses). Many more such discoveries are anticipated in the coming years with radial velocity and transit searches. Here we investigate…

Astrophysics · Physics 2009-11-13 Sean N. Raymond , Rory Barnes , Avi M. Mandell

Ultra-cool dwarf stars are abundant, long-lived, and uniquely suited to enable the atmospheric study of transiting terrestrial companions with JWST. Amongst them, the most prominent is the M8.5V star TRAPPIST-1 and its seven planets. While…

Earth and Planetary Astrophysics · Physics 2024-07-24 TRAPPIST-1 JWST Community Initiative , : , Julien de Wit , René Doyon , Benjamin V. Rackham , Olivia Lim , Elsa Ducrot , Laura Kreidberg , Björn Benneke , Ignasi Ribas , David Berardo , Prajwal Niraula , Aishwarya Iyer , Alexander Shapiro , Nadiia Kostogryz , Veronika Witzke , Michaël Gillon , Eric Agol , Victoria Meadows , Adam J. Burgasser , James E. Owen , Jonathan J. Fortney , Franck Selsis , Aaron Bello-Arufe , Zoë de Beurs , Emeline Bolmont , Nicolas Cowan , Chuanfei Dong , Jeremy J. Drake , Lionel Garcia , Thomas Greene , Thomas Haworth , Renyu Hu , Stephen R. Kane , Pierre Kervella , Daniel Koll , Joshua Krissansen-Totton , Pierre-Olivier Lagage , Tim Lichtenberg , Jacob Lustig-Yaeger , Manasvi Lingam , Martin Turbet , Sara Seager , Khalid Barkaoui , Taylor J. Bell , Artem Burdanov , Charles Cadieux , Benjamin Charnay , Ryan Cloutier , Neil J. Cook , Alexandre C. M. Correia , Lisa Dang , Tansu Daylan , Laetitia Delrez , Billy Edwards , Thomas J. Fauchez , Laura Flagg , Federico Fraschetti , Jacob Haqq-Misra , Ziyu Huang , Nicolas Iro , Ray Jayawardhana , Emmanuel Jehin , Meng Jin , Edwin Kite , Daniel Kitzmann , Quentin Kral , David Lafrenière , Anne-Sophie Libert , Beibei Liu , Subhanjoy Mohanty , Brett M. Morris , Catriona A. Murray , Caroline Piaulet , Francisco J. Pozuelos , Michael Radica , Sukrit Ranjan , Alexander Rathcke , Pierre-Alexis Roy , Edward W. Schwieterman , Jake D. Turner , Amaury Triaud , Michael J. Way

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

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

Upcoming telescopes such as the James Webb Space Telescope (JWST), or the Extremely Large Telescope (ELTs), may soon be able to characterize, through transmission, emission or reflection spectroscopy, the atmospheres of rocky exoplanets…

Exoplanets residing close to their stars can experience evolution of both their physical structures and their orbits due to the influence of their host stars. In this work, we present a coupled analysis of dynamical tidal dissipation and…

Earth and Planetary Astrophysics · Physics 2020-06-03 Juliette Becker , Elena Gallo , Edmund Hodges-Kluck , Fred C. Adams , Rory Barnes

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 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

We study the formation of the TRAPPIST-1 (T1) planets starting shortly after Moon-sized bodies form just exterior to the ice line. Our model includes mass growth from pebble accretion and mergers, fragmentation, type-I migration, and…

Earth and Planetary Astrophysics · Physics 2023-07-26 Anna C. Childs , Cody Shakespeare , David R. Rice , Chao-Chin Yang , Jason H. Steffen

With the discovery of a planetary system around TRAPPIST-1, there has been a surge of interest in ultracool dwarfs as potential planet hosts. Planetary systems around ultracool dwarfs represent our best chance of characterising temperate…

Earth and Planetary Astrophysics · Physics 2020-09-30 Marko Sestovic , Brice-Olivier Demory

Our knowledge of planets' orbital dynamics, which was based on Solar System studies, has been challenged by the diversity of exoplanetary systems. Around cool and ultra cool dwarfs, the influence of tides on the orbital and spin evolution…

Earth and Planetary Astrophysics · Physics 2014-12-02 Emeline Bolmont , Sean N. Raymond , Franck Selsis

The TRAPPIST-1 planets have become prime targets for studying the atmospheric and geophysical properties of planets around M-dwarf stars. To effectively identify their atmospheric composition, we first must understand their geological…

Earth and Planetary Astrophysics · Physics 2025-11-17 Junellie Perez , Laura K. Schaefer , Edward Schwieterman , Kevin B. Stevenson , Howard Chen , Jacob Lustig-Yaeger

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 planetary system is an excellent candidate for study of the evolution and habitability of M-dwarf planets. Transmission spectroscopy observations performed with the Hubble Space Telescope (HST) suggest the innermost five…

Earth and Planetary Astrophysics · Physics 2018-11-28 Sarah E. Moran , Sarah M. Hörst , Natasha E. Batalha , Nikole K. Lewis , Hannah R. Wakeford

The Kepler-186 system consists of five planets orbiting an early-M dwarf. The planets have physical radii of 1.0-1.50 R$_\oplus$ and orbital periods of 4 to 130 days. The $1.1~$R$_\oplus$ Kepler-186f with a period of 130 days is of…

Earth and Planetary Astrophysics · Physics 2015-06-19 Emeline Bolmont , Sean N. Raymond , Philip von Paris , Franck Selsis , Franck Hersant , Elisa V. Quintana , Thomas Barclay

Recent observations of the potentially habitable planets TRAPPIST-1 e, f, and g suggest that they possess large water mass fractions of possibly several tens of wt% of water, even though the host star's activity should drive rapid…

Earth and Planetary Astrophysics · Physics 2021-09-09 Patrick Barth , Ludmila Carone , Rory Barnes , Lena Noack , Paul Mollière , Thomas Henning