Chemical abundance analysis of the Open Clusters Berkeley 32, NGC 752, Hyades and Praesepe
R. Carrera (1,2,3,4), E. Pancino (3) ((1) Instituto de, Astrof\'isica de Canarias, La Laguna, Tenerife, Spain, (2) Departamento de, Astrof\'isica, Universidad de La Laguna, Tenerife, Spain, (3), INAF-Osservatorio Astronomico di Bologna, Bologna, Italy, (4) Centro de

TL;DR
This study provides detailed chemical abundance measurements for four open clusters, enhancing understanding of Galactic chemical evolution and offering new data on elements beyond iron.
Contribution
First high-resolution abundance ratios for NGC 752 giants and comprehensive analysis of multiple elements in open clusters, expanding the dataset for Galactic chemical evolution studies.
Findings
No significant trends of [Fe/H] and [alpha/Fe] with Galactocentric radius.
Possible flattening of [Fe/H] at large Rgc.
Weak increase of [alpha/Fe] with Rgc.
Abstract
Context. Open clusters are ideal test particles to study the chemical evolution of the Galactic disc. However the existing high-resolution abundance determinations, not only of [Fe/H], but also of other key elements, is largely insufficient at the moment. Aims. To increase the number of Galactic open clusters with high quality abundance determinations, and to gather all the literature determinations published so far. Methods. Using high-resolution (R~30000), high-quality (S/N$>60 per pixel), we obtained spectra for twelve stars in four open clusters with the fiber spectrograph FOCES, at the 2.2 Calar Alto Telescope in Spain. We use the classical equivalent widths analysis to obtain accurate abundances of sixteen elements: Al, Ba, Ca, Co, Cr, Fe, La, Mg, Na, Nd, Ni, Sc, Si, Ti, V, Y. Oxygen abundances have been derived through spectral synthesis of the 6300 A forbidden line. Results. We…
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