论文标题
从光学到红外的增生光环恒星的详细化学丰度模式
The detailed chemical abundance patterns of accreted halo stars from the optical to infrared
论文作者
论文摘要
了解我们的银河系的组装需要我们还表征有助于建立它的系统。在这项工作中,我们通过探索来自Gaia-cenceladus/gaia-sausage(GES)的增值光环恒星的化学反应来实现这一目标与银河系和其他恒星种群形成鲜明对比的中子元素群体,以了解其趋势。使用这些派生的丰度,我们发现光学和红外丰度同意在0.15 DEX之内,除了O,CO,NA,CU和CE。与银河系相比,这些恒星增强了中子捕获丰度的趋势,它们的[EU/MG]和中子捕获丰度比(例如[Y/EU],[BA/EU],[BA/EU],[ZR/BA],[LA/BA],[LA/BA]和[ND/BA])指向RR-PROCESS和PROCESS增强和延迟延迟。他们的[$α$/fe]趋势低于[Fe/h] $> $ -1.5 DEX的银河系趋势,类似于先前对GES恒星的研究,并且与这些恒星形成在恒星形成速率较低的系统中形成的图片一致。他们在Ni,Na和Cu丰度中的耗尽的丰度进一步支持了这一点,同样类似于先前对具有积聚起源的低$α$ stars的研究。
Understanding the assembly of our Galaxy requires us to also characterize the systems that helped build it. In this work, we accomplish this by exploring the chemistry of accreted halo stars from the Gaia-Enceladus/Gaia-Sausage (GES) selected in the infrared from the Apache Point Observatory Galactic Evolution Experiment (APOGEE) Data Release 16. We use high resolution optical spectra for 62 GES stars to measure abundances in 20 elements spanning the $α$, Fe-peak, light, odd-Z, and notably, the neutron-capture groups of elements to understand their trends in the context of and in contrast to the Milky Way and other stellar populations. Using these derived abundances we find that the optical and the infrared abundances agree to within 0.15 dex except for O, Co, Na, Cu, and Ce. These stars have enhanced neutron-capture abundance trends compared to the Milky Way, and their [Eu/Mg] and neutron-capture abundance ratios (e.g., [Y/Eu], [Ba/Eu], [Zr/Ba], [La/Ba], and [Nd/Ba]) point to r-process enhancement and a delay in s-process enrichment. Their [$α$/Fe] trend is lower than the Milky Way trend for [Fe/H]$>$-1.5 dex, similar to previous studies of GES stars and consistent with the picture that these stars formed in a system with a lower rate of star formation. This is further supported by their depleted abundances in Ni, Na, and Cu abundances, again, similar to previous studies of low-$α$ stars with accreted origins.