Hubble Space Telescope Near-Ultraviolet Spectroscopy of Bright CEMP-s Stars
Vinicius M. Placco, Timothy C. Beers, Inese I. Ivans, Dan Filler,, Julie A. Imig, Ian U. Roederer, Carlo Abate, Terese Hansen, John J. Cowan,, Anna Frebel, James E. Lawler, Hendrik Schatz, Christopher Sneden, Jennifer S., Sobeck, Wako Aoki, Verne V. Smith, Michael Bolte

TL;DR
This study uses Hubble Space Telescope near-ultraviolet spectroscopy to analyze elemental abundances in two bright CEMP-s stars, revealing new heavy element data and orbital periods, and comparing results with binary evolution models.
Contribution
First NUV spectral analysis of these CEMP-s stars, providing new elemental abundances and orbital periods, and testing binary evolution models for their origin.
Findings
Added new heavy element abundances from NUV spectra.
Determined orbital period of HD196944 as 1325 days.
Model fits support binary evolution scenario for CEMP-s stars.
Abstract
We present an elemental-abundance analysis, in the near-ultraviolet (NUV) spectral range, for the bright carbon-enhanced metal-poor (CEMP) stars HD196944 (V = 8.40, [Fe/H] = -2.41) and HD201626 (V = 8.16, [Fe/H] = -1.51), based on data acquired with the Space Telescope Imaging Spectrograph (STIS) on the Hubble Space Telescope. Both of these stars belong to the sub-class CEMP-s, and exhibit clear over-abundances of heavy elements associated with production by the slow neutron-capture process. HD196944 has been well-studied in the optical region, but we are able to add abundance results for six species (Ge, Nb, Mo, Lu, Pt, and Au) that are only accessible in the NUV. In addition, we provide the first determination of its orbital period, P=1325 days. HD201626 has only a limited number of abundance results based on previous optical work -- here we add five new species from the NUV,…
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