Contact Binaries with Additional Components. II. A Spectroscopic Search for Faint Tertiaries
arXiv:astro-ph/0602139 · doi:10.1086/505265
Abstract
It is unclear how very close binary stars form, given that during the pre-main-sequence phase the component stars would have been inside each other. One hypothesis is that they formed further apart, but were brought in closer after formation by gravitational interaction with a third member of the system. If so, all close binaries should be members of triple (or higher-order) systems. As a test of this prediction, we present a search for the signature of third components in archival spectra of close binaries. In our sample of 75 objects, 23 show evidence for the presence of a third component, down to a detection limit of tertiary flux contributions of about 0.8% at 5200 Å (considering only contact and semi-detached binaries, we find 20 out of 66). In a homogeneous subset of 58 contact binaries, we are fairly confident that the 15 tertiaries we have detected are all tertiaries present with mass ratios and implied outer periods . We find that if the frequency of tertiaries was the same as that of binary companions to solar-type stars, we would have expected to detect about 12 tertiaries. In contrast, if all contact binaries were in triple systems, one would expect about 20. Thus, our results are not conclusive, but sufficiently suggestive to warrant further studies.
21 pages, 3 figures, 2 tables, submitted to the Astronomical Journal
References in corpus (1)
Cited by in corpus (34)
- Comparative statistics and origin of triple and quadruple stars
- Tidal evolution of hierarchical and inclined systems
- Observational Evidence for Tidal Interaction in Close Binary Systems
- Contact binaries with additional components. III. The adaptive optics detections
- Runaway and hypervelocity stars in the Galactic halo: Binary rejuvenation and triple disruption
- Radial Velocity Studies of Close Binary Stars. XI
- Radial Velocity Studies of Close Binary Stars. XII
- Physical parameters and multiplicity of five southern close eclipsing binaries
- Radial Velocity Studies of Close Binary Stars. XV
- A Solar-type Stellar Companion to a Deep Contact Binary in a Quadruple System
- The shortest period field contact binary
- Absolute properties of the binary system BB Pegasi
- CoBiToM Project -- I. Contact Binaries Towards Merging
- Physical parameters of close binary systems: VIII
- Discovery of a double eclipsing binary with periods near a 3:2 ratio
- A Bayesian Analysis of Physical Parameters for 783 Kepler (Near-)Contact Binaries: Extreme-Mass-Ratio Systems and a New Mass Ratio versus Period Lower Limit
- Mass-ratio distribution of contact binary stars
- CoBiToM Project -- II: Evolution of contact binary systems close to the orbital period cut-off
- Error Analysis of the Light Curve Solution of Contact Binaries Based on the W-D Code
- Photometric and period investigation of the late F-type overcontact binary II UMa
- Physical properties and evolutionary status of the W-subtype contact binary V502 Oph with a stellar companion
- Combining astrometry with the light-time effect: The case of VW Cep, zeta Phe and HT Vir
- Absolute Magnitude Calibration for W UMa-Type Systems Based on Gaia Data
- The contact binary V344 Lacertae: is it a triple system?
- Astrophysics in 2006
- The Photometric Investigation of V921 Her using the Lunar-based Ultraviolet Telescope of Chang'e-3 mission
- Photometric study of three ultrashort-period contact binaries
- Three Ultra-short Period Contact Eclipsing Binary Systems Mined from Massive Astronomical Surveys
- YZ Phe: an active contact binary with variation of the O'Connell effect and orbital period change
- Eclipsing Binary Populations across the Northern Galactic Plane from the KISOGP survey
- The triple system KR Com
- Candidates of eclipsing multiples based on extraneous eclipses on binary light curves: KIC 7622486, KIC 7668648, KIC 7670485 and KIC 8938628
- CSS_J154915.7+375506: A low-mass-ratio marginal contact binary system with a hierarchical third body
- Period-Luminosity-Metallicity-Color Relations of Late-type Contact Binaries in the Big Data Era