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An Elemental Assay of Very, Extremely, and Ultra Metal-Poor Stars

Authors :
David Yong
Martin Asplund
Michael S. Bessell
Vinicius M. Placco
Norbert Christlieb
Terese T. Hansen
Anna Frebel
A. E. Garcia Perez
Camilla Juul Hansen
Timothy C. Beers
John E. Norris
Publication Year :
2015
Publisher :
arXiv, 2015.

Abstract

We present a high-resolution elemental-abundance analysis for a sample of 23 very metal-poor (VMP; [Fe/H] < -2.0) stars, 12 of which are extremely metal-poor (EMP; [Fe/H] < -3.0), and 4 of which are ultra metal-poor (UMP; [Fe/H] < -4.0). These stars were targeted to explore differences in the abundance ratios for elements that constrain the possible astrophysical sites of element production, including Li, C, N, O, the alpha-elements, the iron-peak elements, and a number of neutron-capture elements. This sample substantially increases the number of known carbon-enhanced metal-poor (CEMP) and nitrogen-enhanced metal-poor (NEMP) stars -- our program stars include eight that are considered "normal" metal-poor stars, six CEMP-no stars, five CEMP-s stars, two CEMP-r stars, and two CEMP-r/s stars. One of the CEMP-$r$ stars and one of the CEMP-r/s stars are possible NEMP stars. We detect lithium for three of the six CEMP-no stars, all of which are Li-depleted with respect to the Spite plateau. The majority of the CEMP stars have [C/N] > 0. The stars with [C/N] < 0 suggest a larger degree of mixing; the few CEMP-no stars that exhibit this signature are only found at [Fe/H] < -3.4, a metallicity below which we also find the CEMP-no stars with large enhancements in Na, Mg, and Al. We confirm the existence of two plateaus in the absolute carbon abundances of CEMP stars, as suggested by Spite et al. We also present evidence for a "floor" in the absolute Ba abundances of CEMP-no stars at A(Ba)~ -2.0.<br />20 pages, 16 figures, Accepted for publication in ApJ

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....bc92f7d81b864fa635bb6fb6fcadfe71
Full Text :
https://doi.org/10.48550/arxiv.1506.00579