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Please use this identifier to cite or link to this item: http://hdl.handle.net/1959.14/133204

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Title
The RAVE survey : rich in very metal-poor stars
Related
Astrophysical journal. Letters, Vol. 724, No. 1, (2010), p.L104-L108
DOI
10.1088/2041-8205/724/1/L104
Publisher
Institute of Physics
Date
2010
FoR/RFCD Code(s)
020100 Astronomical and Space Sciences
Author/Creator
Fulbright, Jon P
Author/Creator
Wyse, Rosemary F. G
Author/Creator
Gibson, B. K
Author/Creator
Helmi, A
Author/Creator
Munari, U
Author/Creator
Navarro, J. F
Author/Creator
Parker, Q. A
Author/Creator
Reid, W
Author/Creator
Seabroke, G. M
Author/Creator
Siebert, A
Author/Creator
Siviero, A
Author/Creator
Steinmetz, M
Author/Creator
Ruchti, Gregory R
Author/Creator
Watson, F. G
Author/Creator
Williams, M
Author/Creator
Zwitter, T
Author/Creator
Gilmore, G. F
Author/Creator
Grebel, Eva
Author/Creator
Bienaymé, O
Author/Creator
Binney, J
Author/Creator
Bland-Hawthorn, J
Author/Creator
Campbell, R
Author/Creator
Freeman, K. C
Description
Very metal-poor stars are of obvious importance for many problems in chemical evolution, star formation, and galaxy evolution. Finding complete samples of such stars which are also bright enough to allow high-precision individual analyses is of considerable interest. We demonstrate here that stars with iron abundances [Fe/H] <–2 dex, and down to below –4 dex, can be efficiently identified within the Radial Velocity Experiment (RAVE) survey of bright stars, without requiring additional confirmatory observations. We determine a calibration of the equivalent width of the calcium triplet lines measured from the RAVE spectra onto true [Fe/H], using high spectral resolution data for a subset of the stars. These RAVE iron abundances are accurate enough to obviate the need for confirmatory higher-resolution spectroscopy. Our initial study has identified 631 stars with [Fe/H] ≤–2, from a RAVE database containing approximately 200,000 stars. This RAVE-based sample is complete for stars with [Fe/H] ≲–2.5, allowing statistical sample analysis. We identify three stars with [Fe/H] ≲–4. Of these, one was already known to be "ultra metal-poor," one is a known carbon-enhanced metal-poor star, but we obtain [Fe/H] = –4.0, rather than the published [Fe/H] = –3.3, and derive [C/Fe] = +0.9, and [N/Fe] = +3.2, and the third is at the limit of our signal-to-noise ratio. RAVE observations are ongoing and should prove to be a rich source of bright, easily studied, very metal-poor stars.
Description
5 page(s)
Subject Keyword
020100 Astronomical and Space Sciences
Subject Keyword
galaxy: abundances
Subject Keyword
galaxy: stellar content
Subject Keyword
stars: abundances
Subject Keyword
stars: Population II
Resource Type
journal article
Organisation
Macquarie University. Registrar's Office
Organisation
Macquarie University. Dept. of Physics and Astronomy

Identifier
http://hdl.handle.net/1959.14/133204
Identifier
ISSN:2041-8205
Identifier
mq-rm-2010002281
Language
eng
Reviewed
Reviewed
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Citation Format
E-mail Address
Subject
"Astrophysical journal. Letters"
 
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stars: Population II
stars: abundances
Binney, J

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