论文标题
R-Process Alliance:首次麦哲伦/迈克从南方搜索R-Process-增强明星
The R-process Alliance: First Magellan/MIKE Release from the Southern Search for R-Process-enhanced Stars
论文作者
论文摘要
最近,通过宇宙中的$ r $ process,我们对重型元素产生的理解取得了广泛的进步,特别是与Ligo检测到的引力波信号相关的首次观察到的中子星二进制合并(NSBM)事件,GW170817。金属贫困$ r $ r $ - 过程增强的恒星的化学丰度模式为$ r $ process的主要地点提供了关键证据,以及NSBMS是否足够频繁或多产$ r $ $ $ $ $ $ $ - $ r $ - process源负责$ r $ $ $ $ $ $ $ $ $ $ $的材料。我们提出了大气恒星参数(使用非本地热力学平衡分析)和对141个金属贫困星的详细分析,作为$ R $ $ $ - 过程联盟(RPA)工作的一部分。我们使用Mike光谱仪在智利的Las Campanas天文台上获得了恒星的高分辨率“快照”光谱。我们发现10个新的高度增强的$ r $ -II(具有[EU/FE] $> +1.0 $),62个新的中等增强的$ r $ -i($ +0.3 <$ [eu/fe/fe +1.0 $)和17个新的有限限制 - $ r $([eu/fe/fe +0.3 $ < +0.3 $)。其中,我们发现了17个新的碳增强金属贫困(CEMP)恒星,其中5颗是Cemp-No。我们还确定了一个新的$ S $ -PROCESS-增强([ba/eu] $> +0.5 $)和五个新的$ r/s $($ 0.0 <$ [ba/eu] $ < +0.5 $)。在此过程中,我们在[Fe/H] = $ - $ 4.02时发现了一颗新的超金属贫困(UMP)星。 $ r $ -II明星之一显示出$α$的赤字和Fe-peak元素,这是矮人星系星的典型代表。我们搜索了RPA努力的$ r $ - 过程增强星星,已经大约将已知的$ r $ process样本翻了一番。
Extensive progress has been recently made into our understanding of heavy element production via the $r$-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 $r$-process-enhanced stars provides key evidence into the dominant site(s) of the $r$-process, and whether NSBMs are sufficiently frequent or prolific $r$-process sources to be responsible for the majority of $r$-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 $R$-Process Alliance (RPA) effort. We obtained high-resolution "snapshot" spectroscopy of the stars using the MIKE spectrograph on the 6.5m Magellan Clay telescope at Las Campanas Observatory in Chile. We find 10 new highly enhanced $r$-II (with [Eu/Fe] $> +1.0$), 62 new moderately enhanced $r$-I ($+0.3 < $ [Eu/Fe] $\le +1.0$) and 17 new limited-$r$ ([Eu/Fe] $< +0.3$) stars. Among those, we find 17 new carbon-enhanced metal-poor (CEMP) stars, of which five are CEMP-no. We also identify one new $s$-process-enhanced ([Ba/Eu ]$ > +0.5$), and five new $r/s$ ($0.0 < $ [Ba/Eu] $ < +0.5$) stars. In the process, we discover a new ultra metal-poor (UMP) star at [Fe/H]=$-$4.02. One of the $r$-II stars shows a deficit in $α$ and Fe-peak elements, typical of dwarf galaxy stars. Our search for $r$-process-enhanced stars by RPA efforts, has already roughly doubled the known $r$-process sample.