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

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TRAPPIST-1 is an ultracool dwarf (UCD) with a system of 7 terrestrial planets, at least three of which orbit in the habitable zone. The radio emission of such low-mass stars is poorly understood; few UCDs have been detected at radio…

Solar and Stellar Astrophysics · Physics 2019-08-14 Anna Hughes , Aaron Boley , Rachel Osten , Jacob White

[Abridged] We have only been able to comprehensively characterize the atmospheres of a handful of transiting planets, because most orbit faint stars. TESS will discover transiting planets orbiting the brightest stars, enabling, in…

Detecting and characterizing the atmospheres of rocky exoplanets has proven to be challenging for JWST. Transit spectroscopy of the TRAPPIST-1 planets has been impacted by the effects of spots and faculae on the host star. Secondary…

The TRAPPIST-1 system offers the opportunity to characterize terrestrial, potentially habitable planets orbiting a nearby ultracool dwarf star. We performed a four-orbit reconnaissance with the Space Telescope Imaging Spectrograph onboard…

Earth and Planetary Astrophysics · Physics 2017-02-24 V. Bourrier , D. Ehrenreich , P. J. Wheatley , E. Bolmont , M. Gillon , J. de Wit , A. J. Burgasser , E. Jehin , D. Queloz , A. H. M. J. Triaud

Terrestrial planets in the habitable zones (HZs) of low-mass stars and cool dwarfs have received significant scrutiny recently because their shorter orbital periods increase their chances of detection and characterization compared to…

Earth and Planetary Astrophysics · Physics 2017-08-16 Ravi kumar Kopparapu , Eric T. Wolf , Giada Arney , Natasha Batalha , Jacob Haqq-Misra , Simon L. Grimm , Kevin Heng

The majority of potentially habitable exoplanets detected orbit stars cooler than the Sun, and therefore are irradiated by a stellar spectrum peaking at longer wavelengths than that incident on Earth. Here, we present results from a set of…

Interpretation of the ongoing efforts to simulate the atmospheres of potentially-habitable terrestrial exoplanets requires that we understand the underlying dynamics and chemistry of such objects to a much greater degree than 1D or even…

Earth and Planetary Astrophysics · Physics 2024-08-08 F. Sainsbury-Martinez , C. Walsh , G. J. Cooke , D. R. Marsh

Multiple planet systems provide an ideal laboratory for probing exoplanet composition, formation history and potential habitability. For the TRAPPIST-1 planets, the planetary radii are well established from transits (Gillon et al., 2016,…

Earth and Planetary Astrophysics · Physics 2018-02-07 Cayman T. Unterborn , Steven J. Desch , Natalie R. Hinkel , Alejandro Lorenzo

One of the most significant goals of modern science is establishing whether life exists around other suns. The most direct path towards its achievement is the detection and atmospheric characterization of terrestrial exoplanets with…

Instrumentation and Methods for Astrophysics · Physics 2019-02-06 Artem Burdanov , Laetitia Delrez , Michaël Gillon , Emmanuël Jehin

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 first JWST observations of TRAPPIST-1 c showed a secondary eclipse depth of 421+/-94 ppm at 15 um, which is consistent with a bare rock surface or a thin, O2-dominated, low CO2 atmosphere (Zieba et al. 2023). Here, we further explore…

The recently detected TRAPPIST-1 planetary system, with its seven planets transiting a nearby ultracool dwarf star, offers the first opportunity to perform comparative exoplanetology of temperate Earth-sized worlds. To further advance our…

We investigate the potential for the James Webb Space Telescope (JWST) to detect and characterize the atmospheres of the sub-Neptunian exoplanets in the TOI-270 system. Sub-Neptunes are considered more likely to be water worlds than gas…

Earth and Planetary Astrophysics · Physics 2020-05-13 J. Chouqar , Z. Benkhaldoun , A. Jabiri , J. Lustig-Yaeger , A. Soubkiou , A. Szentgyorgyi

Interior characterization traditionally relies on individual planetary properties, ignoring correlations between different planets of the same system. For multi-planetary systems, planetary data are generally correlated. This is because,…

Earth and Planetary Astrophysics · Physics 2018-10-10 Caroline Dorn , Klaus Mosegaard , Simon L Grimm , Yann Alibert

The critical first step in the search for life on exoplanets over the next decade is to determine whether rocky planets transiting small M-dwarf stars possess atmospheres and, if so, what processes sculpt them over time. Because of its…

The spectroscopic characterization of terrestrial exoplanets will be made possible for the first time with JWST. One challenge to characterizing such planets is that it is not known a priori whether they possess optically thick atmospheres…

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

Planets orbiting M-dwarf stars are prime targets in the search for rocky exoplanet atmospheres. The small size of M dwarfs renders their planets exceptional targets for transmission spectroscopy, facilitating atmospheric characterization.…

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