Integrated Spectroscopy of Bulge Globular Clusters and Fields. II. Implications for stellar population models and elliptical galaxies
C. Maraston (MPE), L. Greggio (Padova), A. Renzini (ESO), S. Ortolani, (Padova), R. P. Saglia (USM-Munich), T.H.Puzia (USM-Munich), and M., Kissler-Patig (ESO)

TL;DR
This study calibrates synthetic stellar population models up to solar metallicity using Milky Way globular clusters, revealing alpha-enhancement in elliptical galaxies and improving the accuracy of stellar population diagnostics.
Contribution
It provides the first calibration of SSP models up to solar metallicity with Milky Way GCs, confirming alpha-enhancement in ellipticals and refining spectral index predictions.
Findings
Globular clusters and elliptical galaxies share Mg-Fe index correlations.
Standard models fail at high metallicity without alpha-enhancement.
New models accurately reproduce indices across metallicities with alpha/Fe=+0.3.
Abstract
Synthetic Lick indices (e.g. Mg_2, Fe, etc.) of Simple Stellar Population (SSP) models are calibrated for the first time up to solar metallicity with a sample of Milky Way globular clusters (GCs) which includes the metal rich GCs of the Galactic bulge. This metallicity range is relevant to elliptical galaxies. It is shown that the Bulge GCs and integrated light follow the same correlation between Mg and Fe indices of elliptical galaxies, showing weaker Fe indices at given Mg indices with respect to models that assume solar-scaled abundances. This similarity is the robust empirical evidence for enhanced alpha/Fe ratios in the stellar populations of elliptical galaxies, since the globular clusters are independently known to be alpha-enhanced. The uniqueness of this alpha-overabundance solution is checked by exploring the whole range of model ingredients. We argue that the standard models…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · History and Developments in Astronomy
