论文标题
太阳能恒星的化学成分的统计数据以及与行星形成的链接
Statistics of the Chemical Composition of Solar Analog Stars and Links to Planet Formation
论文作者
论文摘要
已经发现太阳在相对于附近的太阳类似物的难治性(岩石形成)元素中耗尽,这表明行星形成的潜在指标。鉴于耗尽的幅度较小,先前的分析主要取决于高信噪比恒星光谱和确定元素丰度的严格差分方法。我们提出了一种基于替代可能性的方法,可以应用于具有较低精度丰度确定的恒星样本。我们利用来自Apache点天文台银河进化实验(Apogee-2)的大约1700个太阳能类似物的测量值以及恒星参数和化学丰度管道(ASPCAP DR16)。通过为数据开发层次混合模型,我们对元素丰度的统计特性进行了约束,包括与冷凝温度的相关性和与难治性元素消耗的恒星的比例。我们找到了两个不同人群的证据:构成包括太阳在内的大多数太阳能类似物的耗尽的恒星人群,以及占我们样本的10-30%之间的不耗尽的人群。我们发现与冷凝温度的相关性通常与较小的恒星样品的较高精度调查一致。这种趋势,如果与行星系统的形成有牢固的联系,则提供了一种将恒星化学丰度模式连接到银河系恒星样本上的行星系统的方法。
The Sun has been found to be depleted in refractory (rock-forming) elements relative to nearby solar analogs, suggesting a potential indicator of planet formation. Given the small amplitude of the depletion, previous analyses have primarily relied on high signal-to-noise stellar spectra and a strictly differential approach to determine elemental abundances. We present an alternative, likelihood-based approach that can be applied to much larger samples of stars with lower precision abundance determinations. We utilize measurements of about 1700 solar analogs from the Apache Point Observatory Galactic Evolution Experiment (APOGEE-2) and the stellar parameter and chemical abundance pipeline (ASPCAP DR16). By developing a hierarchical mixture model for the data, we place constraints on the statistical properties of the elemental abundances, including correlations with condensation temperature and the fraction of stars with refractory element depletions. We find evidence for two distinct populations: a depleted population of stars that makes up the majority of solar analogs including the Sun, and a not-depleted population that makes up between 10-30% of our sample. We find correlations with condensation temperature generally in agreement with higher precision surveys of a smaller sample of stars. Such trends, if robustly linked to the formation of planetary systems, provide a means to connect stellar chemical abundance patterns to planetary systems over large samples of Milky Way stars.