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A&A 438, 875-888 (2005)
DOI: 10.1051/0004-6361:20052916
Abundances in giant stars of the globular cluster NGC 6752
D. Yong1, 2, F. Grundahl3, P. E. Nissen3, H. R. Jensen3 and D. L. Lambert11 Department of Astronomy, University of Texas, Austin, TX 78712, USA
e-mail: [tofu;dll]@astro.as.utexas.edu
2 Department of Physics and Astronomy, University of North Carolina, NC 27599, USA
3 Institute of Physics and Astronomy, University of Aarhus, 8000 Aarhus C, Denmark
e-mail: [fgj;pen;hrj]@phys.au.dk
(Received 21 February 2005 / Accepted 6 April 2005)
Abstract
Recent theoretical yields and chemical evolution models demonstrate that
intermediate-mass AGB stars cannot reproduce the observed abundance
distributions of O, Na, Mg, and Al. As a further observational test of this
finding, we present elemental abundance ratios [X/Fe] for 20 elements in 38
bright giants of the globular cluster NGC 6752
based on high-resolution, high signal-to-noise spectra obtained with UVES on the VLT.
This is the most complete
spectroscopic analysis of this cluster in terms of the number of elements
considered and the number of stars in the sample. The stars span more than 1000 K in effective temperature and more than 3 visual magnitudes along the red
giant branch.
None of the abundance ratios [X/Fe] show a correlation with
evolutionary status. For Si and heavier elements, the small scatter in [X/Fe]
may be attributable to the measurement uncertainties. Our mean abundance ratios
[X/Fe] are in good agreement with previous studies of this cluster and are also
consistent with other globular clusters and field stars at the same metallicity.
The mean abundance ratios [Ba/Eu] and [La/Eu] exhibit values, in agreement with
field stars at the same metallicity, that lie approximately midway between the
pure r-process and the solar (s-process + r-process) mix, indicating that
AGB stars have played a role in the chemical evolution of the proto-cluster
gas.
Key words: globular clusters: general -- globular clusters: individual: NGC 6752 -- stars: abundances -- stars: evolution -- stars: fundamental parameters
SIMBAD Objects
© ESO 2005
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