论文标题
Hesp-Gompa调查的新$ r $ r $ $ r $ - 过程增强星星
Abundance Analysis of New $r$-Process-Enhanced Stars from the HESP-GOMPA Survey
论文作者
论文摘要
我们介绍了一项研究,介绍了五个相对明亮的$ r $ $ process增强恒星的详细化学丰度,最初被视为SDSS/Marvels Prevervey的一部分。根据HESP-GOMPA调查的一部分(Hanle Echelle光谱仪 - 金属可怜的恒星的银河系调查),在总共60颗恒星中选择了这些恒星。在这里,我们讨论了本次调查中发现的三个新的$ r $ -i和两个新的$ r $ -II明星。我们以$ r \ sim 30,000 $的分辨能力对这些恒星进行了详细的丰度分析,并将我们的结果与现有文献进行了比较。我们可以在所有五颗星中测量第一个$ r $ r $ process-process-process-process-process-process-process-process-process-precess-process-process-process-process-process-process-y和zr的元素,而在第二$ r $ ropocess-process-process-process-process-elements可以检测到BA,CE,ND,SM,EU和DY。也可以在其中一个靶标中检测到thor,这被发现是肌动剂增强恒星。我们已经在$ r $ $ $ process增强的恒星和银河系的其他恒星的子群中进行了比较研究,以限制该类别对象的起源。这些明亮的$ r $ - 过程增强的恒星提供了一个很好的机会,可以详细研究该人群的核合成历史,并阐明其化学富集历史。
We present a study on the detailed chemical abundances of five new relatively bright $r$-process-enhanced stars that were initially observed as part of the SDSS/MARVELS pre-survey. These stars were selected, on the basis of their metallicities and carbon abundances, among a total of 60 stars, for high-resolution spectroscopic follow-up as part of the HESP-GOMPA survey (Hanle Echelle SPectrograph -- Galactic survey Of Metal Poor stArs). Here we discuss the three new $r$-I and two new $r$-II stars found in this survey. We have carried out a detailed abundance analysis for each of these stars, at a resolving power of $R \sim 30,000$, and compare our results to the existing literature. We could measure three of the first $r$-process-peak elements (Sr, Y and Zr) in all five stars, while Ba, Ce, Nd, Sm, Eu, and Dy could be detected among the second $r$-process-peak elements. Thorium could also be detected in one of the targets, which is found to be an actinide-boost star. We have carried out a comparative study among the sub-populations of the $r$-process-enhanced stars and other stars of the Milky Way halo population to constrain the origin of this class of objects. These bright $r$-process-enhanced stars provide an excellent opportunity to study the nucleosynthesis history of this population in great detail, and shed light on their chemical-enrichment histories.