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Related papers: Exoplanet Radius Gap Dependence on Host Star Type

200 papers

Despite the importance of Jupiter and Saturn to Earth's formation and habitability, there has not yet been a comprehensive observational study of how giant exoplanets correlate with the architectural properties of close-in,…

Accurate and precise radius estimates of transiting exoplanets are critical for understanding their compositions and formation mechanisms. To know the planet, we must know the host star in as much detail as possible. We present first…

NASA's Kepler mission revealed that $\sim 30\%$ of Solar-type stars harbor planets with sizes between that of Earth and Neptune on nearly circular and co-planar orbits with periods less than 100 days. Such short-period compact systems are…

Earth and Planetary Astrophysics · Physics 2019-03-05 Sarah Millholland , Gregory Laughlin

An intriguing pattern among exoplanets is the lack of detected planets between approximately $1.5$ R$_\oplus$ and $2.0$ R$_\oplus$. One proposed explanation for this "radius gap" is the photoevaporation of planetary atmospheres, a theory…

Ultra-short period (USP) planets are an enigmatic subset of exoplanets defined by having orbital periods $<$ 1 day. It is still not understood how USP planets form, or to what degree they differ from planets with longer orbital periods.…

Earth and Planetary Astrophysics · Physics 2021-09-29 Ana Sofía M. Uzsoy , Leslie A. Rogers , Ellen M. Price

Extrasolar planets that pass in front of their host star (transit) cause a temporary decrease in the apparent brightness of the star once per orbit, providing a direct measure of the planet's size and orbital period. In some systems with…

Earth and Planetary Astrophysics · Physics 2015-06-24 Daniel Jontof-Hutter , Jason F. Rowe , Jack J. Lissauer , Daniel C. Fabrycky , Eric B. Ford

Data from Kepler's first 136 days of operation are analyzed to determine the distribution of exoplanets with respect to radius, period, and host-star spectral type. The analysis is extrapolated to estimate the percentage of terrestrial,…

Earth and Planetary Astrophysics · Physics 2015-05-30 Wesley A. Traub

One of the most significant advances by NASA's ${\mathit Kepler}$ Mission was the discovery of an abundant new population of highly irradiated planets with sizes between the Earth and Neptune. Subsequent analysis showed that at ~1.5 Earth…

Earth and Planetary Astrophysics · Physics 2019-06-11 Eric D. Lopez , Ken Rice

Exoplanet interior modelling usually makes the assumption that the elemental abundances of a planet are identical to those of its host star. Host stellar abundances are good proxies of planetary abundances, but only for refractory elements.…

Earth and Planetary Astrophysics · Physics 2018-12-04 Haiyang S. Wang , Fan Liu , Trevor R. Ireland , Ramon Brasser , David Yong , Charles H. Lineweaver

Statistical analyses of large surveys for transiting planets such as the Kepler mission must account for systematic errors and biases. Transit detection depends not only on the planet's radius and orbital period, but also on host star…

Earth and Planetary Astrophysics · Physics 2015-06-12 Eric Gaidos , Andrew W. Mann

The Kepler extended mission, also known as K2, has provided the community with a wealth of planetary candidates that orbit stars typically much brighter than the targets of the original mission. These planet candidates are suitable for…

We suggest the existence of a correlation between the planetary radius and orbital period for planets with radii smaller than 4 R_Earth. Using the Kepler data, we find a correlation coefficient of 0.5120, and suggest that the correlation is…

Earth and Planetary Astrophysics · Physics 2015-11-11 Ravit Helled , Michael Lozovsky , Shay Zucker

Detections of massive extrasolar moons are shown feasible with the Kepler space telescope. Kepler's findings of about 50 exoplanets in the stellar habitable zone naturally make us wonder about the habitability of their hypothetical moons.…

Earth and Planetary Astrophysics · Physics 2015-06-11 René Heller , Rory Barnes

The radius-period distribution of exoplanets has been characterized by the \textit{Kepler} survey, and the empirical mass-radius relation by the subset of \textit{Kepler} planets with mass measurements. We combine the two in order to…

Earth and Planetary Astrophysics · Physics 2020-03-04 Andrew R. Neil , Leslie A. Rogers

The field of exoplanetary science has experienced a recent surge of new systems that is largely due to the precision photometry provided by the Kepler mission. The latest discoveries have included compact planetary systems in which the…

Earth and Planetary Astrophysics · Physics 2015-06-17 Stephen R. Kane , Natalie R. Hinkel , Sean N. Raymond

Since the discovery of a planet transiting its host star in the year 2000, thousands of additional exoplanets and exoplanet candidates have been detected, mostly by NASA's Kepler space telescope. Some of them are almost as small as the…

Earth and Planetary Astrophysics · Physics 2019-02-06 René Heller

M dwarf stars are the most promising hosts for detection and characterization of small and potentially habitable planets, and provide leverage relative to solar-type stars to test models of planet formation and evolution. Using \emph{Gaia}…

Earth and Planetary Astrophysics · Physics 2024-09-16 Eric Gaidos , Aleezah Ali , Adam L. Kraus , Jason F. Rowe

The orbital eccentricity-radius relation for small planets is indicative of the predominant dynamical sculpting processes during late-stage orbital evolution. Previous studies have shown that planets orbiting Sun-like stars exhibit an…

Earth and Planetary Astrophysics · Physics 2025-07-11 Sheila Sagear , Sarah Ballard , Gregory J. Gilbert , Mariangel Albornoz , Christopher Lam

A scatter plot of exoplanet mass against red giant host star radius demonstrates an interesting positive trend: larger stars have more massive planets. This implies that the evolution of a star towards a red giant affects the masses of…

Earth and Planetary Astrophysics · Physics 2021-05-17 Jonathan H. Jiang , Sheldon Zhu