Detailed Chemical Abundances in NGC 5824: Another Metal-Poor Globular Cluster with Internal Heavy Element Abundance Variations
Ian U. Roederer, Mario Mateo, John I. Bailey III, Meghin Spencer, (University of Michigan), Jeffrey D. Crane, Stephen A. Shectman (Carnegie, Observatories)

TL;DR
This study provides detailed chemical abundances of stars in NGC 5824, revealing internal heavy element variations and nucleosynthesis patterns, contributing to understanding globular cluster formation and chemical evolution.
Contribution
It offers the first detailed abundance analysis of NGC 5824, showing internal heavy element variations and nucleosynthesis signatures, with implications for cluster formation timescales.
Findings
NGC 5824 has a mean metallicity of [Fe/H]=-1.94.
Large internal dispersion in [Mg/Fe] observed.
Most stars show r-process enrichment, with one s-process enriched star.
Abstract
We present radial velocities, stellar parameters, and detailed abundances of 39 elements derived from high-resolution spectroscopic observations of red giant stars in the luminous, metal-poor globular cluster NGC 5824. We observe 26 stars in NGC 5824 using the Michigan/Magellan Fiber System (M2FS) and two stars using the Magellan Inamori Kyocera Echelle (MIKE) spectrograph. We derive a mean metallicity of [Fe/H]=-1.94+/-0.02 (statistical) +/-0.10 (systematic). The metallicity dispersion of this sample of stars, 0.08 dex, is in agreement with previous work and does not exceed the expected observational errors. Previous work suggested an internal metallicity spread only when fainter samples of stars were considered, so we cannot exclude the possibility of an intrinsic metallicity dispersion in NGC 5824. The M2FS spectra reveal a large internal dispersion in [Mg/Fe], 0.28 dex, which is…
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