论文标题

锂消耗边界,恒星关联和盖亚

Lithium depletion boundary, stellar associations, and Gaia

论文作者

Galindo-Guil, F. J., Barrado, D., Bouy, H., Olivares, J., Bayo, A., Morales-Calderón, M., Huélamo, N., Sarro, L. M., Rivière-Marichalar, P., Stoev, H., Montesinos, B., Stauffer, J. R.

论文摘要

恒星年龄是提高我们对不同天体物理现象的理解的关键。但是,许多用于估计恒星年龄的技术是高度依赖模型的。基于低质量恒星中锂的存在或不存在锂消耗边界(LDB),可用于在20至500 〜Ma之间的恒星关联中得出年龄。这项工作的目的是利用均匀的\ textit {gaia}可视性以及不依赖于单色横向测量值校正的均质\ textit {gaia}的均匀\ textit {gaia}的优势,以一致的方式修改恒星关联的前LDB年龄。我们研究了九个开放式群集和三个以先前确定LDB年龄为特征的移动组。我们从数据和文献中收集了所有可用的信息:会员资格,距离,光度数据,红色,金属性和表面重力。我们重新分配了成员资格,并使用源自GAIA DR2和多波长光度计的距离和有效温度计算了隆隆的光度和有效温度,该距离对于以前的LDB周围的单个对象。我们使用均质方法为所有恒星关联找到了LDB。最后,我们通过将年龄与不同的进化模型进行比较来估计年龄。我们找到了十二个恒星关联的LDB,并使用多种理论进化模型得出了年龄。我们比较了其中的LDB年龄,以及使用其他技术获得的数据,例如等距拟合,最终在各种方法中发现了一些差异。最后,我们指出,32个OI MG可能至少由两个不同年龄的人群组成。

Stellar ages are key to improving our understanding of different astrophysical phenomena. However, many techniques to estimate stellar ages are highly model-dependent. The lithium depletion boundary (LDB), based on the presence or absence of lithium in low-mass stars, can be used to derive ages in stellar associations of between 20 and 500~Ma. The purpose of this work is to revise former LDB ages in stellar associations in a consistent way, taking advantage of the homogeneous \textit{Gaia} parallaxes as well as bolometric luminosity estimations that do not rely on monochromatic bolometric corrections. We studied nine open clusters and three moving groups characterised by a previous determination of the LDB age. We gathered all the available information from our data and the literature: membership, distances, photometric data, reddening, metallicity, and surface gravity. We re-assigned membership and calculated bolometric luminosities and effective temperatures using distances derived from Gaia DR2 and multi-wavelength photometry for individual objects around the former LDB. We located the LDB using a homogeneous method for all the stellar associations. Finally, we estimated the age by comparing it with different evolutionary models. We located the LDB for the twelve stellar associations and derived their ages using several theoretical evolutionary models. We compared the LDB ages among them, along with data obtained with other techniques, such as isochrone fitting, ultimately finding some discrepancies among the various approaches. Finally, we remark that the 32 Ori MG is likely to be composed of at least two populations of different ages.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源