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Published September 20, 2008 | Accepted Version + Published
Journal Article Open

Uncovering extremely metal-poor stars in the Milky Way's ultrafaint dwarf spheroidal satellite galaxies

Abstract

We present new metallicity measurements for 298 individual red giant branch stars in eight of the least luminous dwarf spheroidal galaxies (dSphs) in the Milky Way (MW) system. Our technique is based on medium-resolution Keck DEIMOS spectroscopy coupled with spectral synthesis. We present the first spectroscopic metallicities at [Fe/H] < -3.0 of stars in a dwarf galaxy, with individual stellar metallicities as low as [Fe/H] = -3.3. Because our [Fe/H] measurements are not tied to empirical metallicity calibrators and are sensitive to arbitrarily low metallicities, we are able to probe this extremely metal-poor regime accurately. The metallicity distribution of stars in these dSphs is similar to the MW halo at the metal-poor end. We also demonstrate that the luminosity-metallicity relation previously seen in more luminous dSph galaxies (Mv = -13.4 to -8.8) extends smoothly down to an V absolute magnitude of Mv = -3.7. The discovery of extremely metal-poor stars in dSphs lends support to the ΛCDM galaxy assembly paradigm wherein dwarf galaxies dissolve to form the stellar halo of the MW.

Additional Information

© 2008 The American Astronomical Society. Received 2008 May 2; accepted 2008 August 13; published 2008 September 5. Data herein were obtained at the W. M. Keck Observatory, which is operated as a scientific partnership among the California Institute of Technology, the University of California, and NASA. The Observatory was made possible by the generous financial support of the W. M. Keck Foundation. We thank Jennifer Johnson, Kim Venn, and the referee for valuable advice. We acknowledge National Science Foundation grants AST 03-07966 and AST 06-07852 and NASA/STScI grants GO-10265.02 and GO-10134.02. E. N. K. is supported by a NSF Graduate Research Fellowship. A. F. acknowledges support through the W. J. McDonald Fellowship of the McDonald Observatory.

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Published - KIRapjl08.pdf

Accepted Version - 0807.1925.pdf

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Created:
August 22, 2023
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