Scinovex
article Open AccessTop 1% cited

A SURVEY OF STELLAR FAMILIES: MULTIPLICITY OF SOLAR-TYPE STARS

The Astrophysical Journal Supplement Series · 2010 · Vol. 190(1) · pp. 1–42
Deepak RaghavanHarold A. McAlisterTodd J. HenryDavid W. LathamGeoffrey W. MarcyBrian D. MasonDouglas R. GiesRussel J. WhiteTheo A. ten Brummelaar

Abstract

We present the results of a comprehensive assessment of companions to solar-type stars. A sample of 454 stars, including the Sun, was selected from the Hipparcos catalog with {\pi} > 40 mas, {\sigma}_{\pi}/{\pi} < 0.05, 0.5 < B - V < 1.0 (~ F6-K3), and constrained by absolute magnitude and color to exclude evolved stars. New observational aspects of this work include surveys for (1) very close companions with long-baseline interferometry at the CHARA Array, (2) close companions with speckle interferometry, and (3) wide proper motion companions identified by blinking multi-epoch archival images. In addition, we include the results from extensive radial-velocity monitoring programs and evaluate companion information from various catalogs. The overall observed fractions of single, double, triple, and higher order systems are 56% \pm 2%, 33% \pm 2%, 8% \pm 1%, and 3% \pm 1%, respectively, counting all confirmed stellar and brown dwarf companions. Our completeness analysis indicates that only a few undiscovered companions remain in this well-studied sample, implying that the majority (54% \pm 2%) of solar-type stars are single, in contrast to the results of prior multiplicity studies. The orbital-period distribution of companions is unimodal and roughly log-normal with a peak of about 300 years. The period-eccentricity relation shows a roughly flat distribution beyond the expected circularization for periods below 12 days. The mass-ratio distribution shows a preference for like-mass pairs, which occur more frequently in relatively close pairs. The fraction of planet hosts among single, binary, and multiple systems are statistically indistinguishable, suggesting that planets are as likely to form around single stars as they are around components of binary or multiple systems with sufficiently wide separations.

Stellar, planetary, and galactic studiesAstronomy and Astrophysical ResearchSpace Technology and ApplicationsStarsMultiplicity (mathematics)PlanetBinary numberBinary starSpeckle pattern
Citations
1,746
FWCI
43.80
field-weighted impact
References
172
Percentile
100%
vs. same field & year
Citations per year
Cited by
References
Secular perturbations of asteroids with high inclination and eccentricity
The Astronomical Journal · 1962 · 2,479 citations
Validation of the new Hipparcos reduction
Astronomy and Astrophysics · 2007 · 3,638 citations
The Two Micron All Sky Survey (2MASS)
The Astronomical Journal · 2006 · 11,488 citations
The USNO-B Catalog
The Astronomical Journal · 2003 · 1,994 citations
The Geneva-Copenhagen survey of the Solar neighbourhood
Astronomy and Astrophysics · 2004 · 1,461 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.

A SURVEY OF STELLAR FAMILIES: MULTIPLICITY OF SOLAR-TYPE STARS · Scinovex