论文标题

NGC 752中的锂和铍 - 一个开放簇是亨德年龄的两倍

Lithium and Beryllium in NGC 752 -- An Open Cluster Twice the Age of the Hyades

论文作者

Boesgaard, Ann Merchant, Lum, Michael G., Chontos, Ashley, Deliyannis, Constantine P.

论文摘要

光元素锂(Li)和铍(BE)的表面丰度揭示了有关恒星内部发生的物理过程的信息。在开放簇中对恒星中这两个元素的数量的研究显示了年龄对这些机制的影响。我们在NGC 752的高光谱分辨率和高信噪比的NGC 752中获得了Li和均具有高序列恒星的光谱,并在Keck I望远镜上使用了雇员。为了与其他簇进行有意义的比较,我们已经确定了共同的规模的恒星参数。我们发现了Li的丰富性,并通过光谱合成技术。 NGC 752是研究良好的夏季群集的两倍。我们发现1)在NGC 752中,以6500 K接近6500 K的LI倾角扩大到较低的温度; 2)在较旧的NGC 752中,Be倾角更深; 3)在6200 K附近的Li“峰”较低约0.3 dex; 4)尽管冷却器恒星几乎没有耗尽,但在NGC 752中可能会比羟基降低。 5)两个簇中的LI含量随温度降低而下降,但是在给定温度下NGC 752中的LI较少,$ \ sim $ \ sim $ 0.4 DEX。这些差异与理论预测的表面对流区以下的光元素核的运输是一致的。与旋转旋转的连接是由两个簇中温度与温度的旋转模式表示的。

The surface abundances of the light elements lithium (Li) and beryllium (Be) reveal information about the physical processes taking place in stellar interiors. The investigation of the amount of these two elements in stars in open clusters shows the effect of age on those mechanisms. We have obtained spectra of both Li and Be in main-sequence stars in NGC 752 at high spectral resolution and high signal-to-noise ratios with HIRES on the Keck I telescope. In order to make meaningful comparisons with other clusters, we have determined the stellar parameters on a common scale. We have found abundances of Li and Be by spectral synthesis techniques. NGC 752 is twice the age of the well-studied Hyades cluster. We find that 1) The Li dip centered near 6500 K is wider in NGC 752, having expanded toward cooler temperatures; 2) The Be dip is deeper in the older NGC 752; 3) The Li "peak" near 6200 K is lower by about 0.3 dex; 4) Although there is little Be depletion in the cooler stars, it is possible that Be may be lower in NGC 752 than in the Hyades; 5) The Li content in both clusters declines with decreasing temperature, but there is less Li in NGC 752 at a given temperature by $\sim$0.4 dex. These differences are consistent with the transport of the light-element nuclei below the surface convection zone as predicted by theory. That connection to rotational spin-down is indicated by the pattern of rotation with temperature in the two clusters.

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