论文标题

SMC中级群集KRON 3中球状簇丰度异常的证据

Evidence of globular cluster abundance anomalies in the SMC intermediate-age cluster Kron 3

论文作者

Salgado, C., Da Costa, G. S., Yong, D., Salinas, R., Norris, J. E., Mackey, A. D., Marino, A. F., Milone, A. P.

论文摘要

使用使用VLT/FORS2和Gemini-S/GMOS仪器获得的光谱,我们研究了在小麦芽岩云集群Kron 3中的红色巨人样本中,碳,氮和钠的丰度。具体而言,我们已经研究了CH($λ$ 4300 A)和CN($λ$ 3800,$λ$ 4215)的分子频段的优势,发现了CN频段强度的双峰性和CH/CN/CN抗可相交。频谱合成技术的应用显示,氮的丰度($ \ sim $ 1.2 dex)在应用校正以进行进化混合后,在$ \ sim $ 0.3 dex中的[c/fe]中的扩散。我们还估计了Na d线的强度,估计钠焦的丰度,发现$ \ sim $ 0.8 dex在[Na/fe]中,与N的丰度呈正相关。这是中级恒星群中相关Na,N丰度变化的第一个逐星的光谱示范,这增加了现有的光度和光谱指示,表明存在多个种群的群集中,质量超过了$ \ sim 10^5 $ solar solar solar soses。我们的结果证实,在球状簇中观察到的多个种群的机制不能仅仅是早期的宇宙学效应,仅适用于旧簇,并为了解丰富异常的起源提供了一个关键的额外因素。

Using spectra obtained with the VLT/FORS2 and Gemini-S/GMOS instruments we have investigated carbon, nitrogen and sodium abundances in a sample of red giants in the Small Magellanic Cloud cluster Kron 3. The metallicity and luminosity of this cluster are comparable to those of Galactic globular clusters although with a notably younger age of $\sim$ 6.5 Gyr. Specifically we have investigated the strengths of the CH ($λ$ 4300 A) and CN ($λ$ 3800, $λ$ 4215) molecular bands finding a bimodality of CN band-strengths and a CH/CN anti-correlation. Application of spectrum synthesis techniques reveals a large spread ($\sim$1.2 dex) in nitrogen abundance and a spread in [C/Fe] of $\sim$0.3 dex after applying corrections for evolutionary mixing. We have also estimated sodium abundances from the strengths of the Na D lines finding a range of $\sim$0.8 dex in [Na/Fe] that correlates positively with the N abundances. This is the first star-by-star spectroscopic demonstration of correlated Na, N abundance variations in an intermediate-age star cluster, adding to existing photometric and spectroscopic indications of the presence of multiple populations in such clusters with masses in excess of $\sim 10^5$ solar masses. Our results confirm that the mechanism(s) responsible for the multiple populations observed in globular clusters cannot be an early cosmological effect applying only in old clusters, and provide a key additional factor in the quest to understand the origin of the abundance anomalies.

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