WIYN OPEN CLUSTER STUDY. XXXII. STELLAR RADIAL VELOCITIES IN THE OLD OPEN CLUSTER NGC 188
- 13 May 2008
- journal article
- Published by American Astronomical Society in The Astronomical Journal
- Vol. 135 (6) , 2264-2278
- https://doi.org/10.1088/0004-6256/135/6/2264
Abstract
We present the results of our ongoing radial-velocity (RV) survey of the old (7 Gyr) open cluster NGC 188. Our WIYN 3.5 m data set spans a time baseline of 11 years, a magnitude range of 12 ≤ V ≤ 16.5 (1.18-0.94 M ☉), and a 1° diameter region on the sky. With the addition of a Domain Astrophysical Observatory data set we extend our bright limit to V = 10.8 and, for some stars, extend our time baseline to 35 years. Our magnitude limits include solar-mass main-sequence stars, subgiants, giants, and blue stragglers (BSs), and our spatial coverage extends radially to 17 pc (~13 core radii). For the WIYN data we present a detailed description of our data reduction process and a thorough analysis of our measurement precision of 0.4 km s–1 for narrow-lined stars. We have measured radial velocities for 1046 stars in the direction of NGC 188, and have calculated RV membership probabilities for stars with ≥3 measurements, finding 473 to be likely cluster members. We detect 124 velocity-variable cluster members, all of which are likely to be dynamically hard-binary stars. Using our single member stars, we find an average cluster radial velocity of –42.36 ± 0.04 km s–1. We use our precise RV and proper-motion membership data to greatly reduce field-star contamination in our cleaned color-magnitude diagram, from which we identify six stars of note that lie far from a standard single-star isochrone. We present a detailed study of the spatial distribution of cluster-member populations, and find the binaries to be centrally concentrated, providing evidence for the presence of mass segregation in NGC 188. We observe the BSs to populate a bimodal spatial distribution that is not centrally concentrated, suggesting that we may be observing two populations of BSs in NGC 188, including a centrally concentrated distribution as well as a halo population. Finally, we find NGC 188 to have a global RV dispersion of 0.64 ± 0.04 km s–1, which may be inflated by up to 0.23 km s–1 from unresolved binaries. When corrected for unresolved binaries, the NGC 188 RV dispersion has a nearly isothermal radial distribution. We use this mean-corrected velocity dispersion to derive a virial mass of 2300 ± 460 M ☉ .Keywords
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This publication has 36 references indexed in Scilit:
- X-ray observations of the old open stellar cluster NGC 188Astronomy & Astrophysics, 2005
- Spatial dependence of 2MASS luminosity and mass functions in the old open cluster NGC 188Astronomy & Astrophysics, 2005
- Discovery of Another Peculiar Radial Distribution of Blue Stragglers in Globular Clusters: The Case of 47 TucanaeThe Astrophysical Journal, 2004
- Evolutionary tracks and isochrones for low- and intermediate-mass stars: From 0.15 to 7 $M_{\odot}$, and from $Z=0.0004$ to 0.03Astronomy and Astrophysics Supplement Series, 2000
- A Proper-Motion Membership Study of the Old Open Cluster NGC 188The Astronomical Journal, 1996
- Blue Stragglers and Other Stellar Anomalies: Implications for the Dynamics of Globular ClustersAnnual Review of Astronomy and Astrophysics, 1995
- A photoelectric radial-velocity spectrometer on the 1.2-m telescope of the Dominion Astrophysical ObservatoryPublications of the Astronomical Society of the Pacific, 1982
- Multiplicity among solar-type starsThe Astrophysical Journal Supplement Series, 1976
- The Palomar radial-velocity spectrometer.The Astrophysical Journal, 1974
- New photometric data for the old galactic cluster NGC 188. The presence of a gap, chemical composition, and distance modulusThe Astrophysical Journal, 1969