The chemical abundance of the very metal rich old Open Clusters NGC 6253 and NGC 6791
arXiv:0706.2780 · doi:10.1051/0004-6361:20065213
Abstract
In the framework of a project aiming at deriving in a homogeneous way the properties (age, distance, reddening and detailed chemical abundances) of a large sample of old open clusters, we present here the metal abundance and the abundance ratios of light (C, N, O, Na, Mg, Al, Si, Ca, Ti) and heavier (Cr, Mn, Ni, Ba, Eu) elements in the galactic open clusters NGC 6253 and NGC 6791. We performed spectrum synthesis of selected lines on high resolution spectra of four red clump stars in NGC 6253, taken with the UVES and FEROS spectrographs. We also determined abundances of the same elements for four red clump stars in NGC 6791, observed with SARG, for which we had derived the atmospheric parameters and the iron, carbon and oxygen abundances in a previous paper (Gratton et al. 2006). The average metallicity of NGC 6253 is [Fe/H]=+0.46 (rms = 0.03 dex, systematic error = 0.08 dex), obtained by extensive spectral synthesis of Fe lines. This intermediate age cluster closely resembles the old open cluster NGC 6791, as far as the chemical composition is concerned. C, N, O do not show any significant abundance scatter; they are underabundant with respect to the solar values both in NGC 6253 and NGC 6791. We also find no evident star-to-star scatter in any of the elements measured in both clusters, with the possible exception of Na in NGC 6791. The two clusters show very similar abundances, except for Mg, overabundant in NGC 6791 and not in NGC 6253. Both have solar scaled alpha-elements abundances. We have compared our abundance ratios with literature values for disk giants and dwarfs and bulge giants, finding a general good agreement with the run of elemental ratios with [Fe/H] of disk objects.
Accepted for publication on A&A
References in corpus (6)
- Elemental abundances in the atmosphere of clump giants
- Chemical Homogeneity in Collinder 261 and Implications for Chemical Tagging
- High resolution infrared spectroscopy of the old open cluster NGC6791
- vbyCaHbeta CCD Photometry of Clusters. VIII. The Super-Metal Rich, Old Open Cluster NGC 6791
- Element abundances in the metal rich open cluster NGC6253
- The absolute motion of the peculiar cluster NGC6791
Cited by in corpus (22)
- Clusters and mirages: cataloguing stellar aggregates in the Milky Way
- On the fine structure of the Cepheid metallicity gradient in the Galactic thin disk
- Abundances of four open clusters from solar stars
- A new standard: Age and distance for the open cluster NGC 6791 from the eclipsing binary member V20
- Sodium and Oxygen Abundances in the Open Cluster NGC 6791 from APOGEE H-Band Spectroscopy
- Searching for Chemical Signatures of Multiple Stellar Populations in the Old, Massive Open Cluster NGC 6791
- Clues to the Metallicity Distribution in the Galactic Bulge: Abundances in OGLE-2007_BLG-349S
- O and Na abundance patterns in open clusters of the Galactic disk
- OCCASO II. Physical parameters and Fe abundances of Red Clump stars in 18 Open Clusters
- O, Na, Ba and Eu abundance patterns in open clusters
- Metallicities and Radial Velocities of Five Open Clusters Including a New Candidate Member of the Monoceros Stream
- C, N, O abundances and carbon isotope ratios in evolved stars of the open clusters Collinder 261 and NGC 6253
- The Old, Super-Metal-Rich Open Cluster, NGC 6791 - Elemental Abundances in Turn-off Stars from Keck/HIRES Spectra
- Stellar abundances and ages for metal-rich Milky Way globular clusters - Stellar parameters and elemental abundances for 9 HB stars in NGC6352
- Migration in the shearing sheet and estimates for young open cluster migration
- Stellar loci III: Photometric metallicities for half million FGK stars of Stripe 82
- The role of radial migration in open cluster and field star populations with Gaia dr3
- Galactic structure in the outer disk: the field in the line of sight to the intermediate-age open cluster Tombaugh 1
- Study of the Open Clusters in Kepler Prime Field
- Globular Clusters Lost by the Sagittarius Dwarf Spheroidal Galaxy
- High-resolution spectroscopic analysis of four new chemically peculiar stars
- Revisiting the near infrared Calcium triplet as metallicity indicator