Exploring Anticorrelations and Light Element Variations in Northern Globular Clusters Observed by the APOGEE Survey
Szabolcs Meszaros, Sarah L. Martell, Matthew Shetrone, Sara Lucatello,, Nicholas W. Troup, Jo Bovy, Katia Cunha, Domingo A. Garcia-Hernandez, Jamie, C. Overbeek, Carlos Allende Prieto, Timothy C. Beers, Peter M. Frinchaboy,, Ana E. Garcia Perez, Fred R. Hearty, Jon Holtzman

TL;DR
This study analyzes light-element variations and anticorrelations in red giant stars across 10 Northern globular clusters using APOGEE data, revealing diverse abundance patterns and insights into stellar polluters and nucleosynthesis.
Contribution
First comprehensive, consistent analysis of multiple light-element anticorrelations in globular clusters using APOGEE data, highlighting the role of metallicity and nucleosynthesis processes.
Findings
Mg and Al drive population distinctions in most clusters.
Some clusters show clear abundance bimodalities.
Al abundance spread increases with decreasing metallicity.
Abstract
We investigate the light-element behavior of red giant stars in Northern globular clusters (GCs) observed by the SDSS-III Apache Point Observatory Galactic Evolution Experiment (APOGEE). We derive abundances of nine elements (Fe, C, N, O, Mg, Al, Si, Ca, and Ti) for 428 red giant stars in 10 globular clusters. The intrinsic abundance range relative to measurement errors is examined, and the well-known C-N and Mg-Al anticorrelations are explored using an extreme-deconvolution code for the first time in a consistent way. We find that Mg and Al drive the population membership in most clusters, except in M107 and M71, the two most metal-rich clusters in our study, where the grouping is most sensitive to N. We also find a diversity in the abundance distributions, with some clusters exhibiting clear abundance bimodalities (for example M3 and M53) while others show extended distributions. The…
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