The Chemical Abundances of Stars in the Halo (CASH) Project. III. A New Classification Scheme for Carbon-Enhanced Metal-poor Stars with S-process Element Enhancement
Julie K. Hollek (UT/JINA), Anna Frebel (MIT/JINA), Vinicius M. Placco, (U Notre Dame/JINA), Amanda I. Karakas (ANU), Matthew Shetrone (UT/McDonald, Obs.), Christopher Sneden (UT), Norbert Christlieb (Heidelberg)

TL;DR
This paper introduces a new classification scheme for CEMP stars based on detailed abundance analysis and AGB star models, revealing a continuum between different subgroups and providing insights into their nucleosynthetic origins.
Contribution
It proposes a physically-motivated, continuous classification scheme for CEMP-s and CEMP-r/s stars based on abundance patterns and stellar evolution models.
Findings
HE 0414-0343 is a binary with enhanced neutron-capture elements.
The star's abundance pattern suggests origin from a >1.3 Msun AGB star.
The [Y/Ba] ratio effectively classifies CEMP stars.
Abstract
We present a detailed abundance analysis of 23 elements for a newly discovered carbon-enhanced metal-poor (CEMP) star, HE 0414-0343, from the Chemical Abundances of Stars in the Halo (CASH) Project. Its spectroscopic stellar parameters are Teff = 4863 K, log g = 1.25, vmic = 2.20 km/s, and [Fe/H] = -2.24. Radial velocity measurements covering seven years indicate HE 0414-0343 to be a binary. HE 0414-0343 has [C/Fe] = 1.44 and is strongly enhanced in neutron-capture elements but its abundances cannot be reproduced by a solar-type s-process pattern alone. Traditionally, it could be classified as "CEMP-r/s" star. Based on abundance comparisons with AGB star nucleosynthesis models, we suggest a new physically-motivated origin and classification scheme for CEMP-s stars and the still poorly-understood CEMP-r/s. The new scheme describes a continuous transition between these two so-far…
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