Abstract
Chemical compositions are determined based on high-resolution spectroscopy for 137 candidate extremely metal-poor (EMP) stars selected from the Sloan Digital Sky Survey (SDSS) and its first stellar extension, the Sloan Extension for Galactic Understanding and Exploration (SEGUE). High-resolution spectra with moderate signal-to-noise (S/N) ratios were obtained with the High Dispersion Spectrograph of the Subaru Telescope. Most of the sample (approximately 80%) are main-sequence turnoff stars, including dwarfs and subgiants. Four cool main-sequence stars, the most metal-deficient such stars known, are included in the remaining sample. Good agreement is found between effective temperatures estimated by the SEGUE stellar parameter pipeline, based on the SDSS/SEGUE medium-resolution spectra, and those estimated from the broadband (V - K) 0 and (g - r)0 colors. Our abundance measurements reveal that 70 stars in our sample have [Fe/H] +0.7) among the 25 giants in our sample is as high as 36%, while only a lower limit on the fraction (9%) is estimated for turnoff stars. This paper is the first of a series of papers based on these observational results. The following papers in this series will discuss the higher-resolution and higher-S/N observations of a subset of this sample, the metallicity distribution function, binarity, and correlations between the chemical composition and kinematics of extremely metal-poor stars. © 2013. The American Astronomical Society. All rights reserved.
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CITATION STYLE
Aoki, W., Beers, T. C., Lee, Y. S., Honda, S., Ito, H., Takada-Hidai, M., … Sivarani, T. (2013). High-resolution spectroscopy of extremely metal-poor stars from sdss/segue. I. Atmospheric parameters and chemical compositions. Astronomical Journal, 145(1). https://doi.org/10.1088/0004-6256/145/1/13
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