论文标题

S2流:原始矮人星系的碎片

The S2 Stream: the shreds of a primitive dwarf galaxy

论文作者

Aguado, David S., Myeong, G. C., Belokurov, Vasily, Evans, N. W., Koposov, Sergey E., Prieto, Carlos Allende, Lanfranchi, Gustavo A., Matteucci, Francesca, Shetrone, Matthew, Sbordone, Luca, Navarrete, Camila, Hernández, Jonay I. González, Chanamé, Julio, de Arriba, Luis Peralta, Yuan, Zhen

论文摘要

S2流是一条运动冷的流,通过银河盘向下倾斜。它可能是称为Helmi流的更热,更漫射的结构的一部分。我们使用高分辨率和低分辨率光谱法提出了金属贫困S2流中恒星的多仪器化学分析,并补充了对档案数据的重新分析,以提供62个S2成员的总样本。我们的高分辨率计划提供α元素(C,MG,SI,CA和TI),Iron-Peak元素(V,CR,MN,FE,NI),N封闭过程元素(SR,BA)以及其他S2对象子样本的Li,Na,al和SC等其他元素。我们报告了大金属度扩展(〜1个DEX)的相干丰度模式,证实了S2流是由破坏的矮星银河产生的。 S2的$α$元素的组合表现出一种趋于趋势的趋势,金属性可以暂时解释为[fe/h] <-2的``膝盖''。在低金属末端,S2中的N捕获元件可能由R-Process产生主导,但是几颗恒星具有BA增强,但在Sr中异常较差,此外,一些低 - [Fe/H]恒星似乎是碳增强的。我们在化学演化模型的帮助下解释了观察到的丰度模式,这些模型表明需要适度的星形成效率和低风能效率,证实了S2的祖细胞是一个原始的矮人星系。

The S2 stream is a kinematically cold stream that is plunging downwards through the Galactic disc. It may be part of a hotter and more diffuse structure called the Helmi stream. We present a multi-instrument chemical analysis of the stars in the metal-poor S2 stream using both high- and low-resolution spectroscopy, complemented with a re-analysis of the archival data to give a total sample of 62 S2 members. Our high-resolution program provides alpha-elements (C, Mg, Si, Ca and Ti), iron-peak elements (V, Cr, Mn, Fe, Ni), n-capture process elements (Sr, Ba) and other elements such as Li, Na, Al, and Sc for a subsample of S2 objects. We report coherent abundance patterns over a large metallicity spread (~1 dex) confirming that the S2 stream was produced by a disrupted dwarf galaxy. The combination of S2's $α$-elements displays a mildly decreasing trend with increasing metallicity which can be tentatively interpreted as a ``knee'' at [Fe/H]<-2. At the low metallicity end, the n-capture elements in S2 may be dominated by r-process production however several stars are Ba-enhanced, but unusually poor in Sr. Moreover, some of the low-[Fe/H] stars appear to be carbon-enhanced. We interpret the observed abundance patterns with the help of chemical evolution models that demonstrate the need for modest star-formation efficiency and low wind efficiency confirming that the progenitor of S2 was a primitive dwarf galaxy.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源