Detailed Chemical Abundances in the r-Process-Rich Ultra-Faint Dwarf Galaxy Reticulum 2
Ian U. Roederer (U. Michigan, JINA-CEE), Mario Mateo (U. Michigan),, John I. Bailey III (U. Michigan), Yingyi Song (U. Michigan), Eric F. Bell (U., Michigan), Jeffrey D. Crane (Carnegie Observatories), Sarah Loebman (U., Michigan), David L. Nidever (LSST, Steward Observatory)

TL;DR
This study presents detailed chemical abundances in the ultra-faint dwarf galaxy Reticulum 2, revealing unique r-process element enhancements in some stars and providing insights into nucleosynthesis in early galaxies.
Contribution
First detailed high-resolution abundance analysis of multiple elements in Reticulum 2, confirming rare r-process enhancement and its implications for nucleosynthesis models.
Findings
Three stars show high r-process element levels matching halo star patterns.
One star is deficient in heavy elements and shows trace Sr.
Detection of a star with both r-process and carbon enhancement.
Abstract
The ultra-faint dwarf galaxy Reticulum 2 (Ret 2) was recently discovered in images obtained by the Dark Energy Survey. We have observed the four brightest red giants in Ret 2 at high spectral resolution using the Michigan/Magellan Fiber System. We present detailed abundances for as many as 20 elements per star, including 12 elements heavier than the Fe group. We confirm previous detection of high levels of r-process material in Ret 2 (mean [Eu/Fe]=+1.69+/-0.05) found in three of these stars (mean [Fe/H]=-2.88+/-0.10). The abundances closely match the r-process pattern found in the well-studied metal-poor halo star CS22892-052. Such r-process-enhanced stars have not been found in any other ultra-faint dwarf galaxy, though their existence has been predicted by at least one model. The fourth star in Ret 2 ([Fe/H]=-3.42+/-0.20) contains only trace amounts of Sr ([Sr/Fe]=-1.73+/-0.43) and no…
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