论文标题
年轻LMC簇的染色体图:同时多个种群的另一例
Chromosome maps of young LMC clusters: An additional case of coeval multiple populations
论文作者
论文摘要
最近的研究表明,多个种群(MPS)现象不仅在古代和庞大的银河球状簇(GCS)中发生,但在外部星系中也观察到,GCS在相对于银河系的广泛年龄范围。但是,长期以来,尚不清楚我们是否在不同环境中查看相同的现象。第一个证据表明MPS现象是相同的,无论聚类年龄和宿主星系如何,当时来自小麦哲伦云,Lindsay 1和银河系GC的中级群集被直接比较。通过与哈勃太空望远镜(HST)的新图像相辅相成,我们将比较扩展到了两个不同年龄的簇:NGC 2121($ \ sim $ 2.5GYR)和NGC 1783($ \ sim $ 1.5GYR),从大型的岩石云中。我们发现伪色$ C_ {F275W,F343N,F438W} $与群集本身的年龄之间的RGB宽度之间存在明显的相关性,其中较旧的群集具有较大的$σ(C_ {F275W,F343N,F438W}),F438W})不幸的是,在正确考虑第一个挖掘的效果之前,$σ$值不能直接链接到集群内的n余量变化。这样的HST数据还使我们能够探讨NGC 2121中是否发生多个星形形成发作。这两个人群是无法区分的,年龄差仅为6 $ \ pm $ 12 MYR,初始氦差为0.02或更低。这证实了我们先前的结果,对任何旨在解释GC中化学异常起源的模型施加了严重的限制。
Recent studies have revealed that the Multiple Populations (MPs) phenomenon does not occur only in ancient and massive Galactic globular clusters (GCs), but it is also observed in external galaxies, where GCs sample a wide age range with respect to the Milky Way. However, for a long time, it was unclear whether we were looking at the same phenomenon in different environments or not. The first evidence that the MPs phenomenon is the same regardless of cluster age and host galaxy came out recently when an intermediate-age cluster from the Small Magellanic Cloud, Lindsay 1, and a Galactic GC have been directly compared. By complementing those data with new images from the Hubble Space Telescope (HST), we extend the comparison to two clusters of different ages: NGC 2121 ($\sim$2.5Gyr) and NGC 1783 ($\sim$1.5Gyr), from the Large Magellanic Cloud. We find a clear correlation between the RGB width in the pseudo-colour $C_{F275W,F343N,F438W}$ and the age of the cluster itself, with the older cluster having larger $σ(C_{F275W,F343N,F438W})^{RGB}$ and vice-versa. Unfortunately, the $σ$ values cannot be directly linked to the N-abundance variations within the clusters before properly taking account the effect of the first dredge-up. Such HST data also allow us to explore whether multiple star-formation episodes occurred within NGC 2121. The two populations are indistinguishable, with an age difference of only 6$\pm$12 Myr and an initial Helium spread of 0.02 or lower. This confirms our previous results, putting serious constraints on any model proposed to explain the origin of the chemical anomalies in GCs.