The R-process Alliance: First Magellan/MIKE Release from the Southern Search for R-Process-enhanced Stars
Rana Ezzeddine, Kaitlin Rasmussen, Anna Frebel, Anirudh Chiti, Karina, Hinojisa, Vinicius M. Placco, Ian U. Roederer, Alexander P. Ji, Timothy C., Beers, Terese T. Hansen, Charli M. Sakari, Jorge Melendez

TL;DR
This paper reports the first Magellan/MIKE spectroscopic analysis of 141 metal-poor stars, identifying new r-process-enhanced stars, including r-II, r-I, CEMP, and ultra metal-poor stars, advancing understanding of heavy element origins.
Contribution
It provides the first detailed stellar abundance analysis from the R-Process Alliance using Magellan/MIKE data, expanding the sample of known r-process-enhanced stars.
Findings
Identified 10 new r-II stars with [Eu/Fe] > +1.0
Discovered 62 new r-I stars with +0.3 < [Eu/Fe] ≤ +1.0
Found 17 new CEMP stars, including five CEMP-no
Abstract
Extensive progress has been recently made into our understanding of heavy element production via the -process in the Universe, specifically with the first observed neutron star binary merger (NSBM) event associated with the gravitational wave signal detected by LIGO, GW170817. The chemical abundance patterns of metal-poor -process-enhanced stars provides key evidence into the dominant site(s) of the -process, and whether NSBMs are sufficiently frequent or prolific -process sources to be responsible for the majority of -process material in the Universe. We present atmospheric stellar parameters (using a Non-Local Thermodynamic Equilibrium analysis) and abundances from a detailed analysis of 141 metal-poor stars, carried out as part of the -Process Alliance (RPA) effort. We obtained high-resolution "snapshot" spectroscopy of the stars using the MIKE spectrograph on the…
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