On the Relative Ages of the -Rich and -Poor Stellar Populations in the Galactic Halo
arXiv:1409.3431 · doi:10.1093/mnras/stu1910
Abstract
We study the ages of -rich and -poor stars in the halo using a sample of F and G dwarfs from the Sloan Digital Sky Survey (SDSS). To separate stars based on [/Fe], we have developed a new semi-empirical spectral-index based method and applied it to the low-resolution, moderate signal-to-noise SDSS spectra. The method can be used to estimate the [/Fe] directly providing a new and widely applicable way to estimate [/Fe] from low-resolution spectra. We measured the main-sequence turnoff temperature and combined it with the metallicities and a set of isochrones to estimate the age of the -rich and -poor populations in our sample. We found all stars appear to be older than 8 Gyr confirming the idea that the Galactic halo was formed very early on. A bifurcation appears in the age-metallicity relation such that in the low metallicity regime the -rich and -poor populations are coeval while in the high metallicity regime the -rich population is older than the -poor population. Our results indicate the -rich halo population, which has shallow age-metallicity relation, was formed in a rapid event with high star formation, while the -poor stars were formed in an environment with a slower chemical evolution timescale.
15 pages, 14 figures, 3 tables. Accepted for publication in MNRAS
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