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Related papers: Mid-to-Late M Dwarfs Lack Jupiter Analogs

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We present the results of a high-cadence and high-precision radial velocity (RV) monitoring of 3 late-type dwarf stars hosting long-period giants with well-measured orbits, in order to search for short-period sub-Neptunes (SN, $M \sin i <…

Reliable detections of Earth-sized planets in the habitable zone remain elusive in the Kepler sample, even for M dwarfs. The Kepler sample was once thought to contain a considerable number of M dwarf stars ($T_\mathrm{eff} < 4000$ K), which…

We report iron and titanium abundance measurements from high resolution spectra in a volume-limited sample of 106 M0 and M0.5 dwarf stars. The sample includes stars north of the celestial equator and closer than 29 parsecs. The results…

Solar and Stellar Astrophysics · Physics 2020-04-29 Vincent M. Woolf , George Wallerstein

We announce the discovery of two planetary companions orbiting around the low mass stars Ross 1020 (GJ 3779, M4.0V) and LP 819-052 (GJ 1265, M4.5V). The discovery is based on the analysis of CARMENES radial velocity observations in the…

We present an analysis of three years of precision radial velocity measurements of 160 metal-poor stars observed with HIRES on the Keck 1 telescope. We report on variability and long-term velocity trends for each star in our sample. We…

Earth and Planetary Astrophysics · Physics 2011-02-11 A. Sozzetti , G. Torres , D. W. Latham , R. P. Stefanik , S. G. Korzennik , A. P. Boss , B. W. Carney , J. B. Laird

We present robust planet occurrence rates for Kepler planet candidates around M stars for planet radii $R_p = 0.5-4~\textrm{R}_\oplus$ and orbital periods $P = 0.5-256$ days using the approximate Bayesian computation (ABC) technique. This…

Earth and Planetary Astrophysics · Physics 2020-09-09 Danley C. Hsu , Eric B. Ford , Ryan Terrien

Cool M dwarfs outnumber sun-like G stars by ten to one in the solar neighborhood. Due to their proximity, small size, and low mass, M-dwarf stars are becoming attractive targets for exoplanet searches via almost all current search methods.…

Earth and Planetary Astrophysics · Physics 2015-03-17 I. Pascucci , G. Laughlin , B. S. Gaudi , G. Kennedy , K. Luhman , S. Mohanty , J. Birkby , B. Ercolano , P. Plavchan , A. Skemer

Breakthrough direct detections of planetary companions orbiting A-type stars confirm the existence of massive planets at relatively large separations, but dedicated surveys are required to estimate the frequency of similar planetary…

Earth and Planetary Astrophysics · Physics 2015-06-05 A. Vigan , J. Patience , C. Marois , M. Bonavita , R. J. De Rosa , B. Macintosh , I. Song , R. Doyon , B. Zuckerman , D. Lafrenière , T. Barman

Identifying planets around O-type and B-type stars is inherently difficult; the most massive known planet host has a mass of only about $3M_{\odot}$. However, planetary systems which survive the transformation of their host stars into white…

The population of giant planets on wide orbits around low-mass M dwarf stars is poorly understood, but the unprecedented sensitivity of JWST NIRCam coronagraphic imaging now provides direct access to planets significantly less massive than…

Correlations between stellar properties and the occurrence rate of exoplanets can be used to inform the target selection of future planet search efforts and provide valuable clues about the planet formation process. We analyze a sample of…

Earth and Planetary Astrophysics · Physics 2015-05-19 John Asher Johnson , Kimberly M. Aller , Andrew W. Howard , Justin R. Crepp

Studies of transiting Neptune-size planets orbiting close to nearby bright stars can inform theories of planet formation because mass and radius and therefore mean density can be accurately estimated and compared with interior models. The…

M dwarfs constitute more than 70% of the stars in the solar neighborhood. They are cooler and smaller than Sun-like stars and have less-massive disks which suggests that planets around these stars are more likely to be Neptune-size or…

Earth and Planetary Astrophysics · Physics 2013-10-31 Mahmoudreza Oshagh , Nader Haghighipour , Nuno C. Santos

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

Since white dwarfs are small, the contrast between the thermal emission of an orbiting object and a white dwarf is dramatically enhanced compared to a main sequence host. Furthermore, rocky objects much smaller than the moon have no…

Earth and Planetary Astrophysics · Physics 2015-06-22 Henry Lin , Abraham Loeb

Studies have shown that remnants of destroyed planets and debris-disk planetesimals can survive the volatile evolution of their host stars into white dwarfs, but detection of intact planetary bodies around white dwarfs are few. Simulations…

The core accretion theory of planetary formation does not predict that super-Jupiters will form beyond the snow line of a low mass stars. We present a discovery of 3.9 +- 1.2 M_Jup mass planet orbiting the 0.59 +- 0.17 M_Sun star using the…

In light of the growing interest in searching for low mass, rocky planets, we investigate the impact of starspots on radial velocity searches for earth-mass planets in orbit about M dwarf stars. Since new surveys targeting M dwarfs will…

Solar and Stellar Astrophysics · Physics 2015-05-20 J. R. Barnes , S. V. Jeffers , H. R. A. Jones

Rocky planets in compact configurations are the most common ones around M dwarfs. Many disks around very low mass stars (between 0.1 and 0.5 M$_\odot$) are rather compact and small (without observable substructures and radius less than 20…

Earth and Planetary Astrophysics · Physics 2024-08-05 M. Sanchez , N. van der Marel , M. Lambrechts , G. D. Mulders , O. M. Guerra-Alvarado

Extrasolar planets abound in almost any possible configuration. However, until five years ago, there was a lack of planets orbiting closer than 0.5 au to giant or subgiant stars. Since then, recent detections have started to populated this…

Earth and Planetary Astrophysics · Physics 2016-04-27 J. Lillo-Box , D. Barrado , A. C. M. Correia
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