Primordial r-process Dispersion in Metal-Poor Globular Clusters
arXiv:1104.5056 · doi:10.1088/2041-8205/732/1/L17
Abstract
Heavy elements, those produced by neutron-capture reactions, have traditionally shown no star-to-star dispersion in all but a handful of metal-poor globular clusters (GCs). Recent detections of low [Pb/Eu] ratios or upper limits in several metal-poor GCs indicate that the heavy elements in these GCs were produced exclusively by an r-process. Reexamining GC heavy element abundances from the literature, we find unmistakable correlations between the [La/Fe] and [Eu/Fe] ratios in 4 metal-poor GCs (M5, M15, M92, and NGC 3201), only 2 of which were known previously. This indicates that the total r-process abundances vary star-to-star (by factors of 2-6) relative to Fe within each GC. We also identify potential dispersion in two other GCs (M3 and M13). Several GCs (M12, M80, and NGC 6752) show no evidence of r-process dispersion. The r-process dispersion is not correlated with the well-known light element dispersion, indicating it was present in the gas throughout the duration of star formation. The observations available at present suggest that star-to-star r-process dispersion within metal-poor GCs may be a common but not ubiquitous phenomenon that is neither predicted by nor accounted for in current models of GC formation and evolution.
Accepted for publication in the Astrophysical Journal Letters (6 pages, 2 figures). v2: references updated
References in corpus (6)
- Theory of Star Formation
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- The Highly Unusual Chemical Composition of the Hercules Dwarf Spheroidal Galaxy
- An abundance analysis of bright giants in the globular cluster NGC 1851
- Rubidium and lead abundances in giant stars of the globular clusters M4 and M5
- Neutron-capture elements in the metal-poor globular cluster M15