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Planets in close proximity to their parent star, such as those in the habitable zones around M dwarfs, could be subject to particularly high doses of particle radiation. We have carried out test-particle simulations of ~GeV protons to…

High Energy Astrophysical Phenomena · Physics 2019-03-27 F. Fraschetti , J. J. Drake , J. D. Alvarado-Gomez , S. P. Moschou , C. Garraffo , O. Cohen

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

Nine extrasolar planets with masses between 110 and 430M are known to transit their star. The knowledge of their masses and radii allows an estimate of their composition, but uncertainties on equations of state, opacities and possible…

Stars with planets at intermediate metallicities ([-0.7,-0.2] dex) exhibit properties that differ from the general field stars. Thirteen stars with planets reported in this metallicity range belong to the thick disc, while only one planet…

Astrophysics · Physics 2009-11-13 Misha Haywood

We present a new first-principles analytic approach to interpreting eclipses and phase curves of rocky planets. Observations with JWST have reported nondetections of atmospheres around the majority of hot rocky planets orbiting M dwarfs.…

Earth and Planetary Astrophysics · Physics 2026-01-29 Christopher P. Wirth , Diana Powell , Robin Wordsworth

The discovery of potentially habitable planets around the ultracool dwarf star Trappist-1 naturally poses the question: could Trappist-1 planets be home to life? These planets orbit very close to the host star and are most susceptible to…

Earth and Planetary Astrophysics · Physics 2021-01-06 Raissa Estrela , Sourav Palit , Adriana Valio

The core-accretion and disk instability models have so far been used to explain planetary formation. These models have different conditions, such as planet mass, disk mass, and metallicity for formation of gas giants. The core-accretion…

Astrophysics · Physics 2011-02-11 T. Matsuo , H. Shibai , T. Ootsubo , M. Tamura

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

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

In systems with detected planets, hot-Jupiters and compact systems of multiple planets are nearly mutually exclusive. We compare the relative occurrence of these two architectures as a fraction of detected planetary systems to determine the…

Earth and Planetary Astrophysics · Physics 2018-10-31 John M. Brewer , Songhu Wang , Debra A. Fischer , Daniel Foreman-Mackey

The James Webb Space Telescope (JWST) will offer the first opportunity to characterize terrestrial exoplanets with sufficient precision to identify high mean molecular weight atmospheres, and TRAPPIST-1's seven known transiting Earth-sized…

Earth and Planetary Astrophysics · Physics 2019-06-26 Jacob Lustig-Yaeger , Victoria S. Meadows , Andrew P. Lincowski

We explore whether close-in super-Earths were formed as rocky bodies that failed to grow fast enough to become the cores of gas giants before the natal protostellar disk dispersed. We model the failed cores' inward orbital migration in the…

Earth and Planetary Astrophysics · Physics 2016-12-07 Yasuhiro Hasegawa

TRAPPIST-1 is a nearby system of seven Earth-sized, temperate, rocky exoplanets transiting a Jupiter-sized M8.5V star, ideally suited for in-depth atmospheric studies. Each TRAPPIST-1 planet has been observed in transmission both from space…

About a dozen exoplanetary systems have been discovered with three or more planets participating in a sequence of mean-motion resonances. The unique and complex architectures of these so-called "resonant chains" motivate efforts to…

Earth and Planetary Astrophysics · Physics 2023-11-30 Sarah C. Millholland , Teo Lara , Jan Toomlaid

Core Accretion (CA), the de-facto accepted theory of planet formation, requires formation of massive solid cores as a prerequisite for assembly of gas giant planets. The observed metallicity correlations of exoplanets are puzzling in the…

Earth and Planetary Astrophysics · Physics 2015-02-27 Sergei Nayakshin

Constraining the planetary composition is essential for exoplanetary characterization. In this paper, we use a statistical analysis to determine the characteristic maximum (threshold) radii for various compositions for exoplanets with…

Earth and Planetary Astrophysics · Physics 2018-10-17 Michael Lozovsky , Ravit Helled , Caroline Dorn , Julia Venturini

Accurate modeling of tidal interactions is crucial for interpreting recent JWST observations of the thermal emissions of TRAPPIST-1~b and c and for characterizing the surface conditions and potential habitability of the other planets in the…

The formation mechanisms and chemical compositions of brown dwarfs likely span a diverse range. If they are formed predominantly in isolation by gravitational collapse like dwarf stars then their compositions might follow those of dwarf…

Solar and Stellar Astrophysics · Physics 2016-12-13 Nikku Madhusudhan , Dániel Apai , Siddharth Gandhi

The planet-metallicity correlation serves as a potential link between exoplanet systems as we observe them today and the effects of bulk composition on the planet formation process. Many observers have noted a tendency for Jovian planets to…

Earth and Planetary Astrophysics · Physics 2021-03-31 Sophie G. Anderson , Jason A. Dittmann , Sarah Ballard , Megan Bedell