Blood ties: the real nature of the LMC binary globular clusters NGC 2136 and NGC 2137
arXiv:1201.3715 · doi:10.1088/2041-8205/746/2/L19
Abstract
We have used a sample of high-resolution spectra obtained with the multi-fiber facility FLAMES at the Very Large Telescope of the European Southern Observatory, to derive the kinematical and chemical properties of the two young Large Magellanic Cloud globular clusters NGC 2136 and NGC 2137. These two clusters represent a typical example of LMC cluster pair suspected to be bound in a binary system: indeed the cluster centers of gravity have an angular separation of less than 1.4 arcmin in the sky. The spectral analysis of seven giants in NGC 2136 and four in NGC 2137 reveals that the two clusters share very similar systemic radial velocities, namely Vrad=271.5\pm0.4 km/s (sigma=1.0 km/s) and Vrad=270.6\pm0.5 km/s (sigma=0.9 km/s) for NGC 2136 and NGC 2137, respectively, and they have also indistinguishable abundance patterns. The iron content is [Fe/H]=-0.40\pm0.01 dex (sigma=0.03 dex) for NGC 2136 and -0.39\pm0.01 dex (sigma=0.01 dex) for NGC 2137, while the [alpha/Fe] ratios are roughly solar in both clusters. These findings suggest that the two clusters are gravitationally bound and that they formed from the fragmentation of the same molecular cloud that was chemically homogeneous. This is the first firm confirmation of the binary nature of a LMC cluster pair. The most likely fate of this system is to merge into a single structure in a time-scale comparable with its orbital period.
accepted for publication in Astrophysical Journal Letters
References in corpus (13)
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- Non-LTE calculations for neutral Na in late-type stars using improved atomic data
- DAOSPEC: an automatic code for measuring equivalent widths in high-resolution stellar spectra
- Origin of multiple stellar populations in globular clusters and their helium enrichment
- Looking outside the Galaxy: the discovery of chemical anomalies in 3 old Large Magellanic Cloud clusters
- The chemical composition of red giant stars in four intermediate-age clusters of the Large Magellanic Cloud
- The fraction of globular cluster second-generation stars in the Galactic halo
- NGC 1866: a milestone for understanding the chemical evolution of stellar populations in the LMC
- O and Na abundance patterns in open clusters of the Galactic disk
- The globular cluster NGC 1978 in the Large Magellanic Cloud
- Red Giant stars in the Large Magellanic Cloud clusters
- On the Iron content of NGC 1978 in the LMC: a metal rich, chemically homogeneous cluster
- The evolution of binary star clusters and the nature of NGC2136/NGC2137
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- The WAGGS project - I. The WiFeS Atlas of Galactic Globular cluster Spectra
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- The WAGGS project - II. The reliability of the calcium triplet as a metallicity indicator in integrated stellar light
- Metallicities and ages for star clusters and their surrounding fields in the Large Magellanic Cloud
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- Physical characterization of recently discovered globular clusters in the Sagittarius dwarf spheroidal galaxy II. Metallicities, ages and luminosities
- Metallicity estimates of young clusters in the Magellanic Clouds from Stromgren photometry of supergiant stars
- Signatures of multiple stellar populations in unresolved extragalactic globular/ young massive star clusters
- Pearls on a String: Numerous Stellar Clusters Strung along the Same Orbit
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- Three candidate double clusters in the LMC: truth or dare?
- On Collision Course: The Nature of the Binary Star Cluster NGC 2006 / SL 538
- An ongoing tidal capture in the Large Magellanic Cloud: the low-mass star cluster KMK88-10 captured by the massive globular cluster NGC 1835?
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