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Exploring circumstellar effects on the lithium and calcium abundances in massive Galactic O-rich AGB stars

机译:探索对银河中富含O的AGB恒星中锂和钙丰度的绕星效应

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Context . We previously explored the circumstellar effects on Rb and Zr abundances in a sample (21) of massive Galactic O-rich asymptotic giant branch (AGB) stars. Here we are interested in clarifying the role of the extended atmosphere in the case of Li and Ca. Li is an important indicator of hot bottom burning while the total Ca abundances in these stars could be affected by neutron captures. Aims . We report new Li and Ca abundances in a larger sample (30) of massive Galactic O-rich AGB stars by using more-realistic extended model atmospheres. Li abundances had previously studied with hydrostatic models, while the Ca abundances have been determined here for the first time. Methods . We used a modified version of the spectral synthesis code Turbospectrum and consider the presence of a gaseous circumstellar envelope and radial wind in the modelling of the spectra of these massive AGB stars. The Li and Ca abundances were obtained from the 6708 ? Li I and 6463 ? Ca I resonance lines, respectively. In addition, we studied the sensitivity of the pseudo-dynamical models to variations of the stellar and wind parameters. Results . The Li abundances derived with the pseudo-dynamical models are very similar to those obtained from hydrostatic models (the average difference is 0.18 dex, σ ~(2)?=?0.02), with no difference for Ca. This indicates that the Li and Ca content in these stars is only slightly affected by the presence of a circumstellar envelope. We also found that the Li I and Ca I line profiles are not very sensitive to variations of the model wind parameters. Conclusions . The new Li abundances confirm the Li-rich (and super Li-rich, in some cases) nature of the sample stars, supporting the activation of hot bottom burning in massive Galactic AGB stars. This is in good agreement with the theoretical predictions for solar metallicity AGB models from ATON, Monash, and NuGrid/MESA but is at odds with the FRUITY database, which predicts no hot bottom burning leading to the production of Li. Most (20) sample stars display nearly solar (within the estimated errors and considering possible non-local thermodynamic equilibrium effects) Ca abundances that are consistent with the available s -process nucleosynthesis models for solar metallicity massive AGB stars, which predict overproduction of~(46)Ca relatively to the other Ca isotope and the creation of the radioactive isotope~(41)Ca (half life of 0.1 Myr) but no change in the total Ca abundance. A minority (five) of the sample stars seem to show a significant Ca depletion (by up to 1.0 dex). Possible explanations are offered to explain their apparent and unexpected Ca depletion.
机译:语境。我们先前曾在一个样本(21)的大量银河富含O的渐近巨星分支(AGB)恒星中探索了星云对Rb和Zr丰度的影响。在这里,我们有兴趣澄清在Li和Ca情况下扩展气氛的作用。锂是热底燃烧的重要指标,而这些恒星中的总钙丰度可能受到中子俘获的影响。目的。我们通过使用更现实的扩展模型大气,在较大样本(30个)的大量富含银河O的AGB大恒星中报告了新的Li和Ca丰度。锂丰度以前曾用静水模型研究过,而钙丰度在这里是首次确定。方法 。我们使用了光谱合成代码Turbospectrum的修改版本,并在对这些大质量AGB恒星的光谱建模中考虑了气态星际包络和径向风的存在。 Li和Ca的丰度从6708?李我和6463? Ca I共振线分别。此外,我们研究了拟动力模型对恒星和风参数变化的敏感性。结果。由拟动力模型得出的锂丰度与从流体静力学模型获得的锂丰度非常相似(平均差异为0.18 dex,σ〜(2)?=?0.02),而Ca则没有差异。这表明这些恒星中的Li和Ca含量仅受星际包膜的影响很小。我们还发现Li I和Ca I线轮廓对模型风参数的变化不是很敏感。结论。新的锂丰度证实了样品恒星的富锂(在某些情况下甚至是超级富锂)性质,支持了大型银河AGB恒星中热底燃烧的激活。这与来自ATON,Monash和NuGrid / MESA的太阳金属化AGB模型的理论预测非常吻合,但与FRUITY数据库不一致,后者预测不会导致Li产生的热底燃烧。大多数(20)样本恒星显示出几乎是太阳的(在估计的误差范围内,并考虑到可能的非局部热力学平衡效应),Ca丰度与太阳金属性大AGB恒星的可用s-过程核合成模型相一致,该模型预测了〜( 46)Ca相对于其他Ca同位素和放射性同位素〜(41)Ca的产生(半衰期为0.1 Myr),但总Ca丰度没有变化。少数(五颗)样本恒星似乎显示出显着的Ca耗竭(最高达1.0 dex)。提供可能的解释以解释其明显和意想不到的Ca耗尽。

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