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Related papers: The silicate model and carbon rich model of CoRoT-…

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The bulk density of a planet, as measured by mass and radius, is a result of planet structure and composition. Relative proportions of iron core, rocky mantle, and gaseous envelopes are degenerate for a given density. This degeneracy is…

Earth and Planetary Astrophysics · Physics 2021-06-01 J. G. Schulze , Ji Wang , J. A. Johnson , B. S. Gaudi , C. T. Unterborn , W. R. Panero

The Earth, Venus, Mars, and some extrasolar terrestrial planets have a mass and radius that is consistent with a mass fraction of about 30% metallic core and 70% silicate mantle. At the inner frontier of the solar system, Mercury has a…

CoRoT-7 b, a planet about 70% larger than the Earth orbiting a Sun-like star, is the first-discovered rocky exoplanet, and hence has been dubbed a "super-Earth". Some initial studies suggested that since the planet is so close to its host…

Earth and Planetary Astrophysics · Physics 2015-05-14 Rory Barnes , Sean N. Raymond , Richard Greenberg , Brian Jackson , Nathan A. Kaib

The chemical composition of an exoplanet is a key ingredient in constraining its formation history. Iron is the most abundant transition metal, but has never been directly detected in an exoplanet due to its highly refractory nature.…

Transit and radial velocity models were applied to archival data in order to examine exoplanet properties, in particular for the recently discovered super-Earth GJ 357b. There is however considerable variation in estimated model parameters…

Earth and Planetary Astrophysics · Physics 2021-12-08 Shi Yuan Ng , Zhou Jiadi , Caglar Puskullu , Timothy Banks , Edwin Budding , Michael D. Rhodes

We report on the discovery of a hot Jupiter-type exoplanet, CoRoT-17b, detected by the CoRoT satellite. It has a mass of $2.43\pm0.30$\Mjup and a radius of $1.02\pm0.07$\Rjup, while its mean density is $2.82\pm0.38$ g/cm$^3$. CoRoT-17b is…

Planets and the stars they orbit are born from the same cloud of gas and dust, and the primordial compositions of rocky exoplanets have been assumed to have iron and refractory abundance ratios consistent with their host star. To test this…

Earth and Planetary Astrophysics · Physics 2024-09-16 Casey L. Brinkman , Alex S. Polanski , Daniel Huber , Lauren M. Weiss , Diana Valencia , Mykhaylo Plotnykov

A major goal in the discovery and characterisation of exoplanets is to identify terrestrial-type worlds that are similar to (or otherwise distinct from) our Earth. Recent results have highlighted the importance of applying devolatilisation…

Earth and Planetary Astrophysics · Physics 2022-05-04 Haiyang S. Wang , Sascha P. Quanz , David Yong , Fan Liu , Fabian Seidler , Lorena Acuña , Stephen J. Mojzsis

Recent observations of rocky super-Earths have revealed an apparent wider distribution of Fe/Mg ratios, or core to mantle ratios, than the planets in our Solar System. This study aims to understand how much of the chemical diversity in the…

Earth and Planetary Astrophysics · Physics 2020-03-04 Jennifer Scora , Diana Valencia , Alessandro Morbidelli , Seth A. Jacobson

Differentiation in terrestrial planets is expected to include the formation of a metallic iron core. We predict the existence of terrestrial planets that have differentiated but have no metallic core--planets that are effectively a giant…

Astrophysics · Physics 2009-11-13 L. Elkins-Tanton , S. Seager

We present new visible and infrared observations of the hot Jupiter Kepler-7b to determine its atmospheric properties. Our analysis allows us to 1) refine Kepler-7b's relatively large geometric albedo of Ag=0.35+-0.02, 2) place upper limits…

More than a third of all exoplanets can be classified as super-Earths based on radius (1-2 $R_{\bigoplus}$) and mass (< 10 $M_{\bigoplus}$). Here we model mass-radius relations based on silicate mantle and iron core equations of state to…

Earth and Planetary Astrophysics · Physics 2018-05-29 Kaustubh Hakim , Attilio Rivolidini , Tim Van Hoolst , Stefaan Cottenier , Jan Jaeken , Thomas Chust , Gerd Steinle-Neumann

The bulk chemical composition and interior structure of rocky exoplanets are of fundamental importance to understanding their long-term evolution and potential habitability. Observations of the chemical compositions of the solar system…

White dwarf planetary systems uniquely link the bulk elemental composition of exoplanetary material to the mineralogy as photospheric abundances can be compared to circumstellar dust mineralogy. This study re-examines Spitzer/IRS spectra of…

The CoRoT satellite exoplanetary team announces its sixth transiting planet in this paper. We describe and discuss the satellite observations as well as the complementary ground-based observations - photometric and spectroscopic - carried…

Planets with sizes between that of Earth (with radius R$_\oplus$) and Neptune (about 4 R$_\oplus$) are now known to be common around Sun-like stars. Most such planets have been discovered through the transit technique, by which the planet's…

KELT-9b is an ultra-hot Jupiter observed to be undergoing extreme mass loss. Its A0-type host star has a radiative envelope, which makes its surface layers prone to retaining recently accreted material. To search for potential signs of…

Earth and Planetary Astrophysics · Physics 2022-11-30 Mihkel Kama , Colin P. Folsom , Adam S. Jermyn , Johanna K. Teske

Accurate parameters of the host stars of exoplanets are important for the interpretation of the new planet systems that continue to emerge. The CoRoT satellite recently discovered a transiting rocky planet with a density similar to the…

Solar and Stellar Astrophysics · Physics 2015-05-19 H. Bruntt , M. Deleuil , M. Fridlund , R. Alonso , F. Bouchy , A. Hatzes , M. Mayor , C. Moutou , D. Queloz

We simulate a Kepler-like observation of a theoretical exoplanet population and we show that the observed orbital period distribution of the Kepler giant planet candidates is best matched by an average stellar specific dissipation function…

Earth and Planetary Astrophysics · Physics 2015-05-20 Kevin C. Schlaufman , D. N. C. Lin , S. Ida