论文标题
利用恒星化学的遗传力来揭示银河系的历史
Using heritability of stellar chemistry to reveal the history of the Milky Way
论文作者
论文摘要
由于恒星几代人之间的化学丰度是遗传的,因此我们使用它们来追踪我们星系的进化史。我们提出了一种可靠的方法来创建系统发育树,这是一种用于研究遗传力的生物学工具。将我们的系统发育与有关恒星年龄和动力学特性的信息相结合,我们重建了太阳街区78颗恒星的共享历史。我们树中的分支模式支持了一个场景,在这种情况下,厚磁盘是薄磁盘的祖先种群。从厚磁盘到薄磁盘的过渡显示出一个异常,我们将其归因于恒星形成爆发。我们的树显示了类似于太阳的恒星变异性的进一步签名,也许与恒星形成的增强相关,从而产生了我们的太阳系。在本文中,我们证明了系统发育观点和跨学科合作的巨大潜力,在该合作中,使用生物学的借用技术,我们可以研究有助于银河系进化的关键过程。
Since chemical abundances are inherited between generations of stars, we use them to trace the evolutionary history of our Galaxy. We present a robust methodology for creating a phylogenetic tree, a biological tool used for centuries to study heritability. Combining our phylogeny with information on stellar ages and dynamical properties, we reconstruct the shared history of 78 stars in the Solar Neighbourhood. The branching pattern in our tree supports a scenario in which the thick disk is an ancestral population of the thin disk. The transition from thick to thin disk shows an anomaly, which we attribute to a star formation burst. Our tree shows a further signature of the variability in stars similar to the Sun, perhaps linked to a minor star formation enhancement creating our Solar System. In this paper, we demonstrate the immense potential of a phylogenetic perspective and interdisciplinary collaboration, where with borrowed techniques from biology we can study key processes that have contributed to the evolution of the Milky Way.