论文标题

GAIA-ESO调查:在银河盘上空间解决年龄 - 固定关系

The Gaia-ESO Survey: Age-chemical-clock relations spatially resolved in the Galactic disc

论文作者

Vázquez, C. Viscasillas, Magrini, L., Casali, G., Tautvaišienė, G., Spina, L., Van der Swaelmen, M., Randich, S., Bensby, T., Bragaglia, A., Friel, E., Feltzing, S., Sacco, G. G., Turchi, A., Jiménez-Esteban, F., D'Orazi, V., Delgado-Mena, E., Mikolaitis, Š., Drazdauskas, A., Minkevičiūtė, R., Stonkutė, E., Bagdonas, V., Montes, D., Guiglion, G., Baratella, M., Tabernero, H. M., Gilmore, G., Alfaro, E., Francois, P., Korn, A., Smiljanic, R., Bergemann, M., Franciosini, E., Gonneau, A., Hourihane, A., Worley, C. C., Zaggia, S.

论文摘要

在过去的十年中,由于盖亚(Gaia)和阿瑟(Asterose)空间任务以及基于地面的光谱调查,我们对银河系的了解进行了革命。为了完成这张照片,有必要绘制其恒星种群的年龄。近年来,使用涉及慢速(S)中子捕获和$α$元素(称为化学clocks)的丰度比率的依赖性用于提供恒星年龄的估计,通常在靠近太阳的有限体积中。我们旨在分析银河盘中的化学时钟关系,将范围扩展到r $ _ {\ rm gc} \ sim $ 6-20〜kpc。使用GAIA-ESO调查的第六个内部数据发布,我们使用了一个开放式群集样本,校准了恒星年龄与丰度比[S/$α$]之间的几个关系,这是该目标迄今为止最大的簇。由于它们的宽阔为中心的覆盖范围,我们调查了这些关系形状的径向变化,证实了它们的非大学性。我们估计了恢复开放群集的全球年龄及其个体成员年龄的准确性和准确性。我们将与最高相关系数的多变量关系应用于现场星人群。我们确认没有单个年龄化学时钟关系对整个光盘有效,但是依赖于半乳突状位置,这与恒星形成历史记录的径向变化相关,并结合了低声音元素的非单调性依赖性,而低和中间元素的S过程元素的金属性依赖性。最后,与年轻圆盘恒星[Y/$α$]的年龄相比,丰度比[BA/$α$]对年龄更敏感,并且它们的斜率随着半乳酸的距离而差。

The last decade has seen a revolution in our knowledge of the Galaxy thanks to the Gaia and asteroseismic space missions and the ground-based spectroscopic surveys. To complete this picture, it is necessary to map the ages of its stellar populations. During recent years, the dependence on time of abundance ratios involving slow (s) neutron-capture and $α$ elements (called chemical-clocks) has been used to provide estimates of stellar ages, usually in a limited volume close to the Sun. We aim to analyse the relations of chemical clocks in the Galactic disc extending the range to R$_{\rm GC}\sim$6-20~kpc. Using the sixth internal data release of the Gaia-ESO survey, we calibrated several relations between stellar ages and abundance ratios [s/$α$] using a sample of open clusters, the largest one so far used with this aim. Thanks to their wide galactocentric coverage, we investigated the radial variations of the shape of these relations, confirming their non-universality. We estimated our accuracy and precision in recovering the global ages of open clusters, and the ages of their individual members. We applied the multi-variate relations with the highest correlation coefficients to the field star population. We confirm that there is no single age-chemical clock relationship valid for the whole disc, but that there is a dependence on the galactocentric position, which is related to the radial variation of the star formation history combined with the non-monotonic dependence on metallicity of the yields of the s-process elements from low- and intermediate-mass stars. Finally, the abundance ratios [Ba/$α$] are more sensitive to age than those with [Y/$α$] for young disc stars, and their slopes vary less with galactocentric distance.

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