A Photometric Study of Globular Clusters Observed by the APOGEE Survey
Szabolcs M\'esz\'aros, D. A. Garc\'ia-Hern\'andez, Santi Cassisi,, Matteo Monelli, L\'aszl\'o Szigeti, Flavia Dell'Agli, Al\'iz Derekas, Thomas, Masseron, Matthew Shetrone, Peter Stetson, Olga Zamora

TL;DR
This study combines photometric and spectroscopic data to analyze multiple stellar populations in seven globular clusters, revealing complex chemical and evolutionary histories with new observations of second generation stars.
Contribution
It integrates multi-source photometry and spectroscopy to characterize multiple populations and reports new findings of second generation stars in M5 and M92.
Findings
RGB splits correspond to different chemical compositions.
Mg-Al anti-correlations vary in structure across clusters.
Second generation AGB stars identified in M92.
Abstract
In this paper we describe the photometric and spectroscopic properties of multiple populations in seven northern globular clusters. In this study we employ precise ground based photometry from the private collection of Stetson, space photometry from the Hubble Space Telescope, literature abundances of Na and O, and APOGEE survey abundances for Mg, Al, C, and N. Multiple populations are identified by their position in the CU,B,I -V pseudo-CMD and confirmed with their chemical composition determined using abundances. We confirm the expectation from previous studies that the RGB in all seven clusters are split and the different branches have different chemical compositions. The Mg-Al anti-correlations were well explored by the APOGEE and Gaia-ESO surveys for most globular clusters, some clusters showing bimodal distributions, while others continuous distributions. Even though the structure…
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