Discovery of a Faint Companion to Alcor Using MMT/AO 5 m Imaging
arXiv:0911.5028 · doi:10.1088/0004-6256/139/3/919
Abstract
We report the detection of a faint stellar companion to the famous nearby A5V star Alcor (80 UMa). The companion has M-band ( = 4.8 m) magnitude 8.8 and projected separation 1".11 (28 AU) from Alcor. The companion is most likely a low-mass (0.3 \msun) active star which is responsible for Alcor's X-ray emission detected by ROSAT (L 10 erg/s). Alcor is a nuclear member of the Ursa Major star cluster (UMa; d 25 pc, age 0.5 Gyr), and has been occasionally mentioned as a possible distant (709") companion of the stellar quadruple Mizar ( UMa). Comparing the revised Hipparcos proper motion for Alcor with the mean motion for other UMa nuclear members shows that Alcor has a peculiar velocity of 1.1 km/s, which is comparable to the predicted velocity amplitude induced by the newly-discovered companion (1 km/s). Using a precise dynamical parallax for Mizar and the revised Hipparcos parallax for Alcor, we find that Mizar and Alcor are physically separated by 0.36 0.19 pc (74 39 kAU; minimum 18 kAU), and their velocity vectors are marginally consistent ( probability 6%). Given their close proximity and concordant motions we suggest that the Mizar quadruple and the Alcor binary be together considered the 2nd closest stellar sextuplet. The addition of Mizar-Alcor to the census of stellar multiples with six or more components effectively doubles the local density of such systems within the local volume (d 40 pc).
28 pages, 2 figures, AJ, in press; emulateapj short version at http://www.pas.rochester.edu/~emamajek/alcor.pdf
References in corpus (6)
- A Catalog of Multiplicity among Bright Stellar Systems
- Pulkovo Compilation of Radial Velocities for 35495 Hipparcos Stars in a Common System
- Stellar Multiplicity and the IMF: Most Stars Are Single
- Parallactic Motion for Companion Discovery: An M-Dwarf Orbiting Alcor
- Deep L' and M-band Imaging for Planets Around Vega and epsilon Eridani
- Thermal Infrared Constraint to a Planetary Companion of Vega with the MMT Adaptive Optics System
Cited by in corpus (22)
- BANYAN. XI. The BANYAN multivariate Bayesian algorithm to identify members of young associations within 150 pc
- The VAST Survey - I. Companions and the unexpected X-ray detection of B6-A7 stars
- The formation of very wide binaries during the star cluster dissolution phase
- The binarity of the local white dwarf population
- Bayesian Ages for Early-Type Stars from Isochrones Including Rotation, and a Possible Old Age for the Hyades
- TESS Hunt for Young and Maturing Exoplanets (THYME) III: a two-planet system in the 400 Myr Ursa Major Group
- Secular dynamics of hierarchical multiple systems composed of nested binaries, with an arbitrary number of bodies and arbitrary hierarchical structure. First applications to multiplanet and multistar systems
- Application of a damped Locally Optimized Combination of Images method to the spectral characterization of faint companions using an Integral Field Spectrograph
- The Ages of A-Stars I: Interferometric Observations and Age Estimates for Stars in the Ursa Major Moving Group
- Multiple Stellar Evolution: a population synthesis algorithm to model the stellar, binary, and dynamical evolution of multiple-star systems
- Stellar Multiplicity and Debris Disks: An Unbiased Sample
- Massive heartbeat stars from TESS. I. TESS sectors 1-16
- A Pre-Gaia Census of Nearby Stellar Groups
- The LEECH Exoplanet Imaging Survey: Orbit and Component Masses of the Intermediate Age, Late-Type Binary NO UMa
- Dynamical masses for two M1 + mid-M dwarf binaries monitored during the SPHERE-SHINE survey
- The discrepancy between dynamical and theoretical mass in the triplet-system 2MASS J10364483+1521394
- The HH 24 Complex: Jets, Multiple Star Formation, and Orphaned Protostars
- Direct Spectral Detection: An Efficient Method to Detect and Characterize Binary Systems
- New Periodograms Separating Orbital Radial Velocities and Spectral Shape Variation
- A low-mass companion desert among intermediate-mass visual binaries: The scaled-up counterpart to the brown dwarf desert
- Bayesian analysis of exoplanet and binary orbits
- Characterising Young Visual M-dwarf Binaries with Near-Infrared Integral Field Spectra