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We demonstrate that planet occurrence does not depend on stellar galactocentric velocity in the Solar neighborhood. Using Gaia DR2 astrometry and radial velocity data, we calculate 3D galactocentric velocities for 197,090 Kepler field…

Earth and Planetary Astrophysics · Physics 2019-08-07 Moiya McTier , David Kipping

Binary stars are ubiquitous; the majority of solar-type stars exist in binaries. Exoplanet occurrence rate is suppressed in binaries, but some multiples do still host planets. Binaries cause observational biases in planet parameters, with…

The atmospheres of close-in planets are strongly influenced by mass loss driven by the high-energy (X-ray and extreme ultraviolet, EUV) irradiation of the host star, particularly during the early stages of evolution. We recently developed a…

Earth and Planetary Astrophysics · Physics 2020-01-08 D. Kubyshkina , L. Fossati , A. J. Mustill , P. E. Cubillos , M. B. Davies , N. V. Erkaev , C. P. Johnstone , K. G. Kislyakova , H. Lammer , M. Lendl , P. Odert

The Kepler Mission is exploring the diversity of planets and planetary systems. Its legacy will be a catalog of discoveries sufficient for computing planet occurrence rates as a function of size, orbital period, star-type, and insolation…

Earth and Planetary Astrophysics · Physics 2014-09-08 Natalie M. Batalha

Comparisons between the planet populations around solar-type stars and those orbiting M dwarfs shed light on the possible dependence of planet formation and evolution on stellar mass. However, such analyses must control for other factors,…

Earth and Planetary Astrophysics · Physics 2015-06-22 Eric Gaidos , Andrew W. Mann

Planet formation is sensitive to the conditions in protoplanetary disks, for which scaling laws as a function of stellar mass are known. We aim to test whether the observed population of planets around low-mass stars can be explained by…

Terrestrial planets are more likely to be detected if they orbit M dwarfs due to the favorable planet/star size and mass ratios. However, M dwarf habitable zones are significantly closer to the star than the one around our Sun, which leads…

Context: To date, more than 30 planets have been discovered around giant stars, but only one of them has been found to be orbiting within 0.6 AU from the host star, in direct contrast to what is observed for FGK dwarfs. This result suggests…

Earth and Planetary Astrophysics · Physics 2015-06-03 M. I. Jones , J. S. Jenkins , P. Rojo , C. H. F. Melo

We calculate an empirical, non-parametric estimate of the shape of the period-marginalized radius distribution of planets with periods less than 150 days using the small yet well-characterized sample of cool ($T_{\rm eff} <4000 $K) dwarf…

Earth and Planetary Astrophysics · Physics 2015-06-15 Timothy D. Morton , Jonathan J. Swift

The chemical abundances of planet-hosting stars offer a glimpse into the composition of planet-forming environments. To further understand this connection, we make the first ever measurement of the correlation between planet occurrence and…

We report on the masses, sizes, and orbits of the planets orbiting 22 Kepler stars. There are 49 planet candidates around these stars, including 42 detected through transits and 7 revealed by precise Doppler measurements of the host stars.…

Earth and Planetary Astrophysics · Physics 2014-01-20 Geoffrey W. Marcy , Howard Isaacson , Andrew W. Howard , Jason F. Rowe , Jon M. Jenkins , Stephen T. Bryson , David W. Latham , Steve B. Howell , Thomas N. Gautier , Natalie M. Batalha , Leslie A. Rogers , David Ciardi , Debra A. Fischer , Ronald L. Gilliland , Hans Kjeldsen , Jørgen Christensen-Dalsgaard , Daniel Huber , William J. Chaplin , Sarbani Basu , Lars A. Buchhave , Samuel N. Quinn , William J. Borucki , David G. Koch , Roger Hunter , Douglas A. Caldwell , Jeffrey Van Cleve , Rea Kolbl , Lauren M. Weiss , Erik Petigura , Sara Seager , Timothy Morton , John Asher Johnson , Sarah Ballard , Chris Burke , William D. Cochran , Michael Endl , Phillip MacQueen , Mark E. Everett , Jack J. Lissauer , Eric B. Ford , Guillermo Torres , Francois Fressin , Timothy M. Brown , Jason H. Steffen , David Charbonneau , Gibor S. Basri , Dimitar D. Sasselov , Joshua Winn , Roberto Sanchis-Ojeda , Jessie Christiansen , Elisabeth Adams , Christopher Henze , Andrea Dupree , Daniel C. Fabrycky , Jonathan J. Fortney , Jill Tarter , Matthew J. Holman , Peter Tenenbaum , Avi Shporer , Philip W. Lucas , William F. Welsh , Jerome A. Orosz , T. R. Bedding , T. L. Campante , G. R. Davies , Y. Elsworth , R. Handberg , S. Hekker , C. Karoff , S. D. Kawaler , M. N. Lund , M. Lundkvist , T. S. Metcalfe , A. Miglio , V. Silva Aguirre , D. Stello , T. R. White , Alan Boss , Edna Devore , Alan Gould , Andrej Prsa , Eric Agol , Thomas Barclay , Jeff Coughlin , Erik Brugamyer , Fergal Mullally , Elisa V. Quintana , Martin Still , Susan E. hompson , David Morrison , Joseph D. Twicken , Jean-Michel Désert , Josh Carter , Justin R. Crepp , Guillaume Hébrard , Alexandre Santerne , Claire Moutou , Charlie Sobeck , Douglas Hudgins , Michael R. Haas , Paul Robertson , Jorge Lillo-Box , David Barrado

We develop a general method to fit the planetary distribution function (PLDF) to exoplanet survey data. This maximum likelihood method accommodates more than one planet per star and any number of planet or target star properties.…

Earth and Planetary Astrophysics · Physics 2015-05-28 Andrew N. Youdin

The Kepler Mission began its 3.5-year photometric monitoring campaign in May 2009 on a select group of approximately 150,000 stars. The stars were chosen from the ~half million in the field of view that are brighter than 16th magnitude. The…

Some theories of planet formation and evolution predict that intermediate-mass stars host more hot Jupiters than Sun-like stars, others reach the conclusion that such objects are very rare. By determining the frequencies of those planets we…

Earth and Planetary Astrophysics · Physics 2019-08-14 Silvia Sabotta , Petr Kabath , Judith Korth , Eike W. Guenther , Daniel Dupkala , Sascha Grziwa , Tereza Klocova , Marek Skarka

The planet candidates discovered by the Kepler mission provide a rich sample to constrain the architectures and relative inclinations of planetary systems within approximately 0.5 AU of their host stars. We use the triple-transit systems…

Earth and Planetary Astrophysics · Physics 2015-06-05 Anders Johansen , Melvyn B. Davies , Ross P. Church , Viktor Holmelin

Kepler has identified over 600 multiplanet systems, many of which have several planets with orbital distances smaller than that of Mercury -- quite different from the Solar System. Because these systems may be difficult to explain in the…

Earth and Planetary Astrophysics · Physics 2015-06-18 Kevin C. Schlaufman

While stellar metallicity has long been known to correlate with planetary properties, the galactic metallicity gradient alone does not account for the trend. It is therefore possible that there exists some time-dependent component to planet…

Earth and Planetary Astrophysics · Physics 2025-07-30 Christopher Lam , Sarah Ballard , Sheila Sagear , Kathryne J. Daniel

Recent studies claimed that planets around the same star have similar sizes and masses and regular spacings, and that planet pairs usually show ordered sizes such that the outer planet is usually the larger one. Here I show that these…

Earth and Planetary Astrophysics · Physics 2020-04-15 Wei Zhu

The distribution of small planet radius ($<$4 R$_\oplus$) is an indicator of the underlying processes governing planet formation and evolution. We investigate the correlation between the radius distribution of exoplanets in \textit{Kepler}…

Earth and Planetary Astrophysics · Physics 2024-08-29 David R. Rice , Jason H. Steffen , Allona Vazan

We investigate the role that planet detection order plays in the Kepler planet detection pipeline. The Kepler pipeline typically detects planets in order of descending signal strength (MES). We find that the detectability of transits…

Earth and Planetary Astrophysics · Physics 2019-01-11 Jon K. Zink , Jessie L. Christiansen , Bradley M. S. Hansen
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