论文标题

侏罗纪:银河系中的化学异常结构

Jurassic: A Chemically Anomalous Structure in the Galactic Halo

论文作者

Fernández-Trincado, José G., Beers, Timothy C., Minniti, Dante

论文摘要

通过Apogee-2测得的银河光环中巨型恒星的详细元素丰富模式揭示了硅增强物的独特而明显的恒星亚群([[si/fe] $ \ gtrsim +0.5美元($ -1.5 \ Lessim $ [Fe/H] $ \ Lessim-0.8 $)。在[Si/Fe]中具有过度充实的恒星引起了极大的兴趣,因为它们具有非常强大的硅($^{28} $ SI)光谱特征,用于其金属性和进化阶段的恒星,并提供有关球状簇(GCS)中罕见的核合成途径的线索。 Si-rich的田野恒星已经被猜想是从GC中蒸发的,但是,它们的丰度的起源尚不清楚,并且已经提供了几种情况来解释异常的丰度比率。这些假设是,其中一些是从先前污染的祖细胞污染的气体中诞生的,该祖先经历了特定而特殊的核合成事件,或者是由于先前进化的伴侣的质量转移所致。但是,这些场景并不能同时解释在富含Si的恒星中发现的化学物种的广泛范围。取而代之的是,我们表明,这种不寻常的恒星的当前清单及其与已知的Halo子结构的关系(包括原位Halo,\ textit {gaia} -Enceladus,Helmi流(S)和红杉),等等)仍然不完整。我们报告了铁峰(Fe),Light-(c和n),$α-$(O和MG),Odd-Z(Na和Al)以及\ textit {s} -process(CE和ND)的化学丰富度[Si/fe]与某些银河GC中观察到的那样极端,并且来自[Si/Fe] - [Fe/H]平面中其他恒星相对干净。这项新的人口普查证实了具有统计学意义的存在。

Detailed elemental-abundance patterns of giant stars in the Galactic halo measured by APOGEE-2 have revealed the existence of a unique and significant stellar sub-population of silicon-enhanced ([Si/Fe]$\gtrsim +0.5$) metal-poor stars, spanning a wide range of metallicities ($-1.5\lesssim$[Fe/H]$\lesssim-0.8$). Stars with over-abundances in [Si/Fe] are of great interest because these have very strong silicon ($^{28}$Si) spectral features for stars of their metallicity and evolutionary stage, offering clues about rare nucleosynthetic pathways in globular clusters (GCs). Si-rich field stars have been conjectured to have been evaporated from GCs, however, the origin of their abundances remains unclear, and several scenarios have been offered to explain the anomalous abundance ratios. These include the hypothesis that some of them were born from a cloud of gas previously polluted by a progenitor that underwent a specific and peculiar nucleosynthesis event, or due to mass transfer from a previous evolved companion. However, those scenarios do not simultaneously explain the wide gamut of chemical species that are found in Si-rich stars. Instead, we show that the present inventory of such unusual stars, as well as their relation to known halo substructures (including the in-situ halo, \textit{Gaia}-Enceladus, the Helmi Stream(s), and Sequoia, among others), is still incomplete. We report the chemical abundances of the iron-peak (Fe), the light- (C and N), the $α-$ (O and Mg), the odd-Z (Na and Al), and the \textit{s}-process (Ce and Nd) elements of 55 newly identified Si-rich field stars (among more than $\sim$600,000 APOGEE-2 targets), that exhibit over-abundance of [Si/Fe] as extreme as those observed in some Galactic GCs, and are relatively cleanly from other stars in the [Si/Fe]-[Fe/H] plane. This new census confirms the presence of a statistically significant ...

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