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Related papers: On the Probability that a Rocky Planet's Compositi…

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The accretion of icy and rocky solids during the formation of a gas giant planet is poorly constrained and challenging to model. Refractory species, like sulfur, are only present in solids in the protoplanetary disk where planets form.…

An exoplanet's structure and composition are first-order controls of the planet's habitability. We explore which aspects of bulk terrestrial planet composition and interior structure affect the chief observables of an exoplanet: its mass…

Earth and Planetary Astrophysics · Physics 2016-03-16 Cayman T. Unterborn , Evan E. Dismukes , Wendy R. Panero

(Abridged) Tentative correlations between the presence of dusty debris discs and low-mass planets have been presented. In parallel, detailed chemical abundance studies have reported different trends between samples of planet and non-planet…

Solar and Stellar Astrophysics · Physics 2015-06-24 J. Maldonado , C. Eiroa , E. Villaver , B. Montesinos , A. Mora

Major element fractionation among chondrites has been discussed for decades as ratios relative to Si or Mg. Recently, by expressing ratios relative to Fe, I discovered a new relationship admitting the possibility that ordinary chondrite…

Astrophysics · Physics 2007-05-23 J. Marvin Herndon

Correlations between the occurrence rate of exoplanets and their host star properties provide important clues about the planet formation processes. We studied the dependence of the observed properties of exoplanets (radius, mass, and…

Earth and Planetary Astrophysics · Physics 2018-10-31 M. Narang , P. Manoj , E. Furlan , C. Mordasini , T. Henning , B. Mathew , R. K. Banyal , T. Sivarani

We use an end-to-end model of planet formation, thermodynamic evolution, and atmospheric escape to investigate how the statistical imprints of evaporation depend on the bulk composition of planetary cores (rocky vs. icy). We find that the…

Earth and Planetary Astrophysics · Physics 2018-02-14 Sheng Jin , Christoph Mordasini

Elemental abundance studies of solar twin stars suggest that the solar chemical composition contains signatures of the formation of terrestrial planets in the solar system, namely small but significant depletions of the refractory elements.…

Solar and Stellar Astrophysics · Physics 2015-06-17 I. Ramirez , J. Melendez , M. Asplund

The Kepler Mission, combined with ground based radial velocity (RV) follow-up and dynamical analyses of transit timing variations, has revolutionized the observational constraints on sub-Neptune-size planet compositions. The results of an…

Earth and Planetary Astrophysics · Physics 2015-03-05 Leslie A. Rogers

Here we critically examine the geophysical and geochemical properties of the Moon in order to identify the extent to which dynamical scenarios satisfy these observations. New joint inversions of existing lunar geophysical data (mean mass,…

Earth and Planetary Astrophysics · Physics 2025-12-22 Paolo A. Sossi , Miki Nakajima , Amir Khan

We present independent and self-consistent metallicities for a sample of 807 planet-hosting stars from the California-Kepler Survey from an LTE spectroscopic analysis using a selected sample of Fe I and Fe II lines. Correlations between…

Earth and Planetary Astrophysics · Physics 2021-10-14 Luan Ghezzi , Cintia F. Martinez , Robert F. Wilson , Katia Cunha , Verne V. Smith , Steven R. Majewski

We report on the characterization of the Kepler-101 planetary system, thanks to a combined DE-MCMC analysis of Kepler data and forty radial velocities obtained with the HARPS-N spectrograph. This system was previously validated by Rowe et…

Favored theories of giant planet formation center around two main paradigms, namely the core accretion model and the gravitational instability model. These two formation scenarios support the hypothesis that the giant planet metallicities…

It is well established that the chemical structure of the Milky Way exhibits a bimodality with respect to the $\alpha$-enhancement of stars at a given [Fe/H]. This has been studied largely based on a bulk $\alpha$ abundance, computed as a…

Astrophysics of Galaxies · Physics 2019-09-20 Kirsten Blancato , Melissa Ness , Kathryn V. Johnston , Jan Rybizki , Megan Bedell

We present a series of papers dedicated to modelling the accretion and differentiation of rocky planets that form by pebble accretion within the lifetime of the protoplanetary disc. In this first paper, we focus on how the accreted ice…

Earth and Planetary Astrophysics · Physics 2023-03-15 Anders Johansen , Thomas Ronnet , Martin Schiller , Zhengbin Deng , Martin Bizzarro

We present preliminary results of a detailed chemical abundance analysis for a sample of solar-type stars known to exhibit excess infrared emission associated with dusty debris disks. Our sample of 28 stars was selected based on results…

Solar and Stellar Astrophysics · Physics 2015-06-17 Adam M. Ritchey , Guillermo Gonzalez , Myra Stone , George Wallerstein

The mass of CoRoT-7b, the first transiting superearth exoplanet, is still a subject of debate. A wide range of masses have been reported in the literature ranging from as high as 8 M_Earth to as low as 2.3 M_Earth. Although most mass…

The Galactic bulge, that is the prominent out-of-plane over-density present in the inner few kiloparsecs of the Galaxy, is a complex structure, as the morphology, kinematics, chemistry and ages of its stars indicate. To understand the…

Astrophysics of Galaxies · Physics 2016-07-06 P. Di Matteo

Relative abundances of refractory elements in planets are commonly assumed to reflect those of their host stars. However, because elements are classified according to their behaviour in the solar nebula, this implicitly assumes condensation…

Earth and Planetary Astrophysics · Physics 2026-05-20 Urja Zaveri , Haiyang S. Wang , Paolo A. Sossi

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
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