Multiplicity of the Galactic Senior Citizens: A high-resolution search for cool subdwarf companions
arXiv:1411.3336 · doi:10.1088/0004-637X/804/1/30
Abstract
Cool subdwarfs are the oldest members of the low mass stellar population. Mostly present in the galactic halo, subdwarfs are characterized by their low metallicity. Measuring their binary fraction and comparing it to solar metallicity stars could give key insights into the star formation process early in the history of the Milky Way. However, because of their low luminosity and relative rarity in the solar neighborhood, binarity surveys of cool subdwarfs have suffered from small sample sizes and incompleteness. Previous surveys have suggested that the binary fraction of red subdwarfs is much lower than for their main sequence cousins. Using the highly efficient RoboAO system, we present the largest yet high-resolution survey of subdwarfs, sensitive to angular separations, down to 0.15 arcsec, and contrast ratios, up to 6 magnitude difference, invisible in past surveys. Of 344 target cool subdwarfs, 40 are in multiple systems, 16 newly discovered, for a binary fraction of 11.6 percent and 1.8 percent error. We also discovered 6 triple star systems for a triplet fraction of 1.7 percent and 0.7 percent error. Comparisons to similar surveys of solar metallicity dwarf stars gives a 3 sigma disparity in luminosity between companion stars, with subdwarfs displaying a shortage of low contrast companions.
13 pages, 10 figures, submitted to ApJ
References in corpus (11)
- Revised metallicity classes for low-mass stars: dwarfs (dM), subdwarfs (sdM), extreme subdwarfs (esdM), and ultra subdwarfs (usdM)
- Influence of Stellar Multiplicity On Planet Formation. II. Planets Are Less Common in Multiple-Star Systems with Separations Smaller than 1500 AU
- Binary Stars in the Orion Nebula Cluster
- High-efficiency Autonomous Laser Adaptive Optics
- Brown dwarf formation by binary disruption
- Orbital Monitoring of the AstraLux Large M-dwarf Multiplicity Sample
- Cool Subdwarf Investigations II: Multiplicity
- The Metallicity of Stars with Close Companions
- On the Inclination and Habitability of the HD 10180 System
- The Robo-AO software: Fully autonomous operation of a laser guide star adaptive optics and science system
- Finding Extreme Subdwarfs
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- M Subdwarf Research. II. Atmospheric Parameters and Kinematics
- SRAO: optical design and the dual-knife-edge WFS
- The Rapid Transient Surveyor
- An Adaptive Optics Census of Companions to Northern Stars Within 25 pc with Robo-AO