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We use the TRAPPIST-1 system as a model observation of Earth-like planets. The densities of these planets being 1-10% less than the Earth suggest that the outer planets may host significant hydrospheres. We explore the uncertainty in water…

Earth and Planetary Astrophysics · Physics 2025-04-24 David R. Rice , Chenliang Huang , Jason H. Steffen , Allona Vazan

The Moon-forming giant impact extensively melts and partially vaporizes the silicate Earth and delivers a substantial mass of metal to Earth's core. Subsequent evolution of the magma ocean and overlying atmosphere has been described by…

Earth and Planetary Astrophysics · Physics 2019-10-24 Kaveh Pahlevan , Laura Schaefer , Marc M. Hirschmann

When planets receive insolation above a certain critical value called the runaway threshold, liquid surface water vaporizes completely, which forms the inner edge of the habitable zone. Because land planets can emit a large amount of…

Earth and Planetary Astrophysics · Physics 2020-01-08 Takanori Kodama , Hidenori Genda , Ryouta O'ishi , Ayako Abe-Ouchi , Yutaka Abe

We investigate the origin and loss of captured hydrogen envelopes from protoplanets between `sub-Earth'-like bodies of 0.1$M_{\oplus}$ up to `super-Earths' with 5$M_{\oplus}$ in the HZ of a Sun like G star, assuming their rocky cores had…

Earth and Planetary Astrophysics · Physics 2014-03-05 H. Lammer , A. Stökl , N. V. Erkaev , E. A. Dorfi , P. Odert , M. Güdel , Yu. N. Kulikov , K. G. Kislyakova , M. Leitzinger

Close-in transiting sub-Neptunes are abundant in our galaxy \cite{fulton2017california}. Planetary interior models based on their observed radius-mass relationship suggest that sub-Neptunes contain a discernible amount of either hydrogen…

Earth and Planetary Astrophysics · Physics 2025-11-11 Harrison Horn , Allona Vazan , Stella Chariton , Vitali Prakapenka , Sang-Heon Shim

The water abundance in a planetary atmosphere provides a key constraint on the planet's primordial origins because water ice is expected to play an important role in the core accretion model of planet formation. However, the water content…

The interaction between a magma ocean and a primordial atmosphere is increasingly recognized as a key process in shaping planetary envelope compositions. This coupling should strongly influence gas accretion, yet its role during the…

Earth and Planetary Astrophysics · Physics 2026-03-04 Tadahiro Kimura , Tim Lichtenberg

In the core accretion model, gas-giant planets first form a solid core, which then accretes gas from a protoplanetary disk when the core exceeds a critical mass. Here, we model the atmosphere of a core that grows by accreting ice-rich…

Earth and Planetary Astrophysics · Physics 2017-11-08 John Chambers

Determining compositions of low-mass exoplanets is essential in understanding their origins. The certainty by which masses and radius are measured affects our ability to discern planets that are rocky or volatile rich. In this study, we aim…

Earth and Planetary Astrophysics · Physics 2024-05-08 Mykhaylo Plotnykov , Diana Valencia

We examine the possibility that icy super-Earth mass planets, formed over long time scales (0.1--1~Gyr) at large distances ($\sim$ 200--1000~AU) from their host stars, will develop massive H-rich atmospheres. Within the interior of these…

Earth and Planetary Astrophysics · Physics 2017-05-01 Amit Levi , Scott J. Kenyon , Morris Podolak , Dina Prialnik

Recent studies have unequivocally proven the existence of clouds in super-Earth atmospheres (Kreidberg et al. 2014). Here we provide a theoretical context for the formation of super-Earth clouds by determining which condensates are likely…

Earth and Planetary Astrophysics · Physics 2016-08-24 Rostom Mbarek , Eliza M. -R. Kempton

The demographics of sub-Jovian planets around low-mass stars is dominated by populations of ``sub-Neptunes" and ``super-Earths", distinguished by the presence or absence of envelopes of low-molecular weight volatiles, i.e., H2, He, and H2O.…

Earth and Planetary Astrophysics · Physics 2025-04-16 Tatsuya Yoshida , Eric Gaidos

The hydrogen isotopic (D/H) ratio reflects the global cycling and evolution of water on Earth as it fractionates through planetary processes. We model the water cycle taking seafloor hydrothermal alteration, chemical alteration of…

Earth and Planetary Astrophysics · Physics 2018-07-18 Hiroyuki Kurokawa , Julien Foriel , Matthieu Laneuville , Christine Houser , Tomohiro Usui

Terrestrial planets in the solar system, such as the Earth, are oxygen-rich, with silicates and iron being the most common minerals in their interiors. However, the true chemical diversity of rocky planets orbiting other stars is yet…

Earth and Planetary Astrophysics · Physics 2015-06-11 Nikku Madhusudhan , Kanani K. M. Lee , Olivier Mousis

The climate of a terrestrial exoplanet is controlled by the type of host star, the orbital configuration and the characteristics of the atmosphere and the surface. Many rocky exoplanets have higher eccentricities than those in the Solar…

Earth and Planetary Astrophysics · Physics 2023-06-21 Binghan Liu , Dan Marsh , Catherine Walsh , Gregory Cooke

In the past 15 years, astronomers have revealed that a significant fraction of the stars should harbor planets and that it is likely that terrestrial planets are abundant in our galaxy. Among these planets, how many are habitable, i.e.…

Earth and Planetary Astrophysics · Physics 2013-05-09 Francois Forget

Short-period Earth to Neptune size exoplanets (super-Earths) with voluminous gas envelopes seem to be very common. These gas atmospheres are thought to have originated from the protoplanetary disk in which the planets were embedded during…

Earth and Planetary Astrophysics · Physics 2016-11-17 Sivan Ginzburg , Re'em Sari

Super-Earths and sub-Neptunes are commonly thought to have accreted hydrogen/helium envelopes, consisting of a few to ten percent of their total mass, from the primordial gas disk. Subsequently, hydrodynamic escape driven by core-powered…

Earth and Planetary Astrophysics · Physics 2021-04-07 William Misener , Hilke E. Schlichting

A leading model for the origin of super-Earths proposes that planetary embryos migrate inward and pile up on close-in orbits. As large embryos are thought to preferentially form beyond the snow line, this naively predicts that most…

Earth and Planetary Astrophysics · Physics 2018-07-06 Sean N. Raymond , Thibault Boulet , Andre Izidoro , Leandro Esteves , Bertram Bitsch

A decade ago, the detection of the first transiting extrasolar planet provided a direct constraint on its composition and opened the door to spectroscopic investigations of extrasolar planetary atmospheres. As such characterization studies…

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