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Related papers: Optimizing Doppler Surveys for Planet Yield

200 papers

Microlensing is the most promising method to study the statistical frequency of extra-solar planets orbiting typical (random) stars in the Milky Way, even those several kiloparsecs from Earth. The lensing zone corresponds to orbital…

Astrophysics · Physics 2009-09-25 Penny D. Sackett

The ongoing High Accuracy Radial velocity Planet Search (HARPS) has found that 30-50% of GK dwarfs in the solar neighborhood host planets with sub-Neptune masses in orbits of P < 50 days. At first glance, this overall occurrence rate seems…

Earth and Planetary Astrophysics · Physics 2011-08-31 A. Wolfgang , G. Laughlin

We determine the fraction of F, G, and K dwarfs in the Solar Neighborhood hosting hot jupiters as measured by the California Planet Survey from the Lick and Keck planet searches. We find the rate to be 1.2\pm0.38%, which is consistent with…

Earth and Planetary Astrophysics · Physics 2015-06-05 J. T. Wright , G. W. Marcy , A. W. Howard , John Asher Johnson , T. Morton , D. A. Fischer

Context: How planet properties depend on stellar mass is a key diagnostic of planetary formation mechanisms. Aims: This motivates planet searches around stars which are significantly more massive or less massive than the Sun, and in…

We report initial results of a large radial velocity survey of K dwarfs up to a distance of 50 pc from the Solar System, to look for stellar, brown dwarf, and jovian planets using radial velocities from the CHIRON spectrograph on the…

Zechmeister et al. (2009) surveyed 38 nearby M dwarfs from March 2000 to March 2007 with VLT2 and the UVES spectrometer. This data has recently been reanalyzed (Butler et al. 2019), yielding a significant improvement in the Doppler velocity…

The radial velocity signature of stellar noise is small, around the meter-per-second, but already too much for the detection of Earth mass planets in habitable zones. In this paper, we address the important role played by observational…

Earth and Planetary Astrophysics · Physics 2015-05-20 Xavier Dumusque , Stephane Udry , Christophe Lovis , Nuno C. Santos , Mario J. F. P. G. Monteiro

We constrain the densities of Earth- to Neptune-size planets around very cool (Te =3660-4660K) Kepler stars by comparing 1202 Keck/HIRES radial velocity measurements of 150 nearby stars to a model based on Kepler candidate planet radii and…

Earth and Planetary Astrophysics · Physics 2015-05-30 Eric Gaidos , Debra A. Fischer , Andrew W. Mann , Sebastien Lepine

We present a preliminary analysis of the sensitivity of Anglo-Australian Planet Search data to the orbital parameters of extrasolar planets. To do so, we have developed new tools for the automatic analysis of large-scale simulations of…

Astrophysics · Physics 2009-11-13 S. J. O'Toole , C. G. Tinney , H. R. A. Jones , R. P. Butler , G. W. Marcy , B. Carter , J. Bailey

Using the MIPS instrument on the Spitzer telescope, we have searched for infrared excesses around a sample of 82 stars, mostly F, G, and K main-sequence field stars, along with a small number of nearby M stars. These stars were selected for…

Astrophysics · Physics 2008-11-26 C. Beichman , G. Bryden , K. Stapelfeldt

Red Dwarfs (RDs) are the most common, low-mass stars (<=0.5 M_sun) in the Solar neighbourhood, and probably in the Universe as well. Most (likely all) young RDs are magnetically active, and therefore it is impossible to measure their radial…

Solar and Stellar Astrophysics · Physics 2013-09-19 Marcin P. Gawronski , Krzysztof Gozdziewski , Krzysztof Katarzynski

Adaptive optics, large primary mirrors, and careful selection of target stars are the keys to ground-based imaging of extrasolar planets. Our near-IR survey is capable of identifying exoplanets of 1-10 M${_J}$ within 100 AU of young (t$<$60…

Astrophysics · Physics 2007-05-23 Denise Kaisler , Ben Zuckerman , Eric Becklin , Bruce Macintosh

The Dharma Planet Survey (DPS) aims to monitor about 150 nearby very bright FGKM dwarfs (within 50 pc) during 2016$-$2020 for low-mass planet detection and characterization using the TOU very high resolution optical spectrograph…

Measuring the occurrence rates of celestial objects is a valuable way to study their origins and evolution. Giant planets and brown dwarfs produce large Doppler signatures that are easily detectable by modern instrumentation, and legacy…

Earth and Planetary Astrophysics · Physics 2026-03-13 Judah Van Zandt , Greg Gilbert , Steven Giacalone , Erik Petigura , Andrew Howard , Luke Handley

Context. High contrast imaging is a powerful technique to search for gas giant planets and brown dwarfs orbiting at separation larger than several AU. Around solar-type stars, giant planets are expected to form by core accretion or by…

Solar and Stellar Astrophysics · Physics 2015-06-03 P. Delorme , A. M. Lagrange , G. Chauvin , M. Bonavita , S. Lacour , M. Bonnefoy , D. Ehrenreich , H. Beust

We present preliminary results of a radial-velocity search for companions to a volume limited sample of M dwarfs. Typical accuracy range between 10m/s for the brighter stars and 70m/s at our limiting magnitude. We complement the radial…

Astrophysics · Physics 2007-05-23 X. Delfosse , T. Forveille , J. -L. Beuzit , S. Udry , M. Mayor , C. Perrier

We classified the reddest ($r-J>2.2$) stars observed by the NASA $Kepler$ mission into main sequence dwarf or evolved giant stars and determined the properties of 4216 M dwarfs based on a comparison of available photometry with that of…

Earth and Planetary Astrophysics · Physics 2016-02-24 E. Gaidos , A. W. Mann , A. L. Kraus , M. Ireland

The vast diversity of planetary systems detected to date is defying our capability of understanding their formation and evolution. Well-defined volume-limited surveys are the best tool at our disposal to tackle the problem, via the…

Earth and Planetary Astrophysics · Physics 2013-01-16 G. Lo Curto , M. Mayor , W. Benz , F. Bouchy , G. Hebrard , C. Lovis , C. Moutou , D. Naef , F. Pepe , D. Queloz , N. C. Santos , D. Segransan , S. Udry

We investigate potential biases in the measurements of exoplanet orbital parameters obtained from radial velocity observations for single-planet systems. We create a mock catalog of radial velocity data, choosing input planet masses,…

Earth and Planetary Astrophysics · Physics 2015-05-19 Nadia L. Zakamska , Margaret Pan , Eric B. Ford

The yield of Earth-like planets will likely be a primary science metric for future space-based missions that will drive telescope aperture size. Maximizing the exoEarth candidate yield is therefore critical to minimizing the required…

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