Finding -II sibling stars in the Milky Way with the Greedy Optimistic Clustering algorithm
arXiv:2207.04110 · doi:10.3847/1538-4357/acb93b
Abstract
-process enhanced stars with [Eu/Fe] (so-called -II stars) are believed to have formed in an extremely neutron-rich environment in which a rare astrophysical event (e.g., a neutron star merger) occurred. This scenario is supported by the existence of an ultra-faint dwarf galaxy, Reticulum~II, where most of the stars are highly enhanced in -process elements. In this scenario, some small fraction of dwarf galaxies around the Milky Way were enhanced. When each -enhanced dwarf galaxy accreted to the Milky Way, it deposited many -II stars in the Galactic halo with similar orbital actions. To search for the remnants of the -enhanced systems, we analyzed the distribution of the orbital actions of -II stars in the Solar neighborhood by using the Gaia EDR3 data. Since the observational uncertainty is not negligible, we applied a newly-developed {\it greedy optimistic clustering method} to the orbital actions of our sample stars. We found six clusters of -II stars that have similar orbits and chemistry, one of which is a new discovery. Given the apparent phase-mixed orbits of the member stars, we interpret that these clusters are good candidates for remnants of completely disrupted -enhanced dwarf galaxies that merged with the ancient Milky Way.
Main text 21 pages, References 3 pages, Appendix 16 pages. 11 figures. 3 tables. ApJ accepted. (See arXiv:2204.08205 for the algorithm of our method.)
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