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LITHIUM-RICH GIANTS IN GLOBULAR CLUSTERS*

机译:球状集群中的富含锂的小宝石*

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Although red giants deplete lithium on their surfaces, some giants are Li-rich. Intermediate-mass asymptotic giant branch (AGB) stars can generate Li through the Cameron–Fowler conveyor, but the existence of Li-rich, low-mass red giant branch (RGB) stars is puzzling. Globular clusters are the best sites to examine this phenomenon because it is straightforward to determine membership in the cluster and to identify the evolutionary state of each star. In 72 hours of Keck/DEIMOS exposures in 25 clusters, we found four Li-rich RGB and two Li-rich AGB stars. There were 1696 RGB and 125 AGB stars with measurements or upper limits consistent with normal abundances of Li. Hence, the frequency of Li-richness in globular clusters is (0.2?±?0.1)% for the RGB, (1.6?±?1.1)% for the AGB, and (0.3?±?0.1)% for all giants. Because the Li-rich RGB stars are on the lower RGB, Li self-generation mechanisms proposed to occur at the luminosity function bump or He core flash cannot explain these four lower RGB stars. We propose the following origin for Li enrichment: (1) All luminous giants experience a brief phase of Li enrichment at the He core flash. (2) All post-RGB stars with binary companions on the lower RGB will engage in mass transfer. This scenario predicts that 0.1% of lower RGB stars will appear Li-rich due to mass transfer from a recently Li-enhanced companion. This frequency is at the lower end of our confidence interval.
机译:尽管红色巨人耗尽了其表面的锂,但一些巨人富含锂。中等质量渐近巨型分支(AGB)恒星可以通过Cameron–Fowler输送机产生Li,但是富含Li的低质量红色巨型分支(RGB)恒星的存在令人困惑。球状星团是检查该现象的最佳地点,因为直接确定星团中的成员并确定每颗恒星的进化状态是很容易的。在25个星团的Keck / DEIMOS曝光的72小时中,我们发现了4个富含Li的RGB和2个富含Li的AGB星。有1696个RGB和125个AGB恒星,其测量值或上限与Li的正常丰度一致。因此,球状簇中富锂的频率对于RGB为(0.2±±0.1)%,对于AGB为(1.6±±1.1)%,对于所有巨人,为(0.3±±0.1)%。由于富含Li的RGB恒星位于较低的RGB上,因此建议在光度函数凸点或He核心闪光处发生的Li自生机制无法解释这四个较低的RGB恒星。我们提出以下锂富集的来源:(1)所有发光巨星在He核心闪光时都会经历短暂的Li富集阶段。 (2)所有较低RGB上带有双星伴星的RGB后恒星将参与质量传递。该场景预测,由于最近锂增强的同伴的质量转移,0.1%的较低RGB恒星将出现富锂的。此频率位于我们的置信区间的下限。

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