Nitrogen enrichment and clustered star formation at the dawn of the Galaxy
arXiv:2306.00060 · doi:10.1093/mnras/stad2241
Abstract
Anomalously high nitrogen-to-oxygen abundance ratios [N/O] are observed in globular clusters (GCs), among the field stars of the Milky Way (MW), and even in the gas in a galaxy. Using data from the APOGEE Data Release 17 and the Gaia Data Release 3, we present several independent lines of evidence that most of the MW's high-[N/O] stars were born in situ in massive bound clusters during the early, pre-disk evolution of the Galaxy. Specifically, we show that distributions of metallicity [Fe/H], energy, the angular momentum , and distance of the low-metallicity high-[N/O] stars match the corresponding distributions of stars of the Aurora population and of the in-situ GCs. We also show that the fraction of in-situ field high-[N/O] stars, , increases rapidly with decreasing metallicity. During epochs when metallicity evolves from to , the Galaxy spins up and transitions from a turbulent Aurora state to a coherently rotating disk. This transformation is accompanied by many qualitative changes. In particular, we show that high N/O abundances similar to those observed in GN-z11 were common before the spin-up () when up to of the in-situ stars formed in massive bound clusters. The dramatic drop of at indicates that after the disk emerges the fraction of stars forming in massive bound clusters decreases by two orders of magnitude.
18 pages, 13 figures, submitted to MNRAS
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