论文标题

用球形簇推断宇宙的年龄

Inferring the Age of the Universe with Globular Clusters

论文作者

Valcin, David, Bernal, José Luis, Jimenez, Raul, Verde, Licia, Wandelt, Benjamin D.

论文摘要

我们提出了通过利用在完整的颜色磁性图中利用恒星分布获得的68个银河球状簇的绝对年龄的估计值。特别是,我们共同估计每个集群的绝对年龄,距离,红色,金属性([fe/h])和[$α$/fe],施加了由独立观察激励的先验;我们还通过恒星建模估算可能的系统学。我们针对球状群集样品的派生距离与使用主要序列矮星(如果有的话)从GAIA获得的距离一致,并且被推断的年龄与先前发布的年龄符合。我们方法的新颖性是,通过采用的先验,我们能够从球状群集颜色图表图中肯定这些参数。我们发现,最古老的球状簇的平均年龄为$ t _ {\ rm gc} = 13.32 \ pm 0.1 {\ rm(stat。)} \ pm 0.5 {\ rm(sys。)} $,以68 \%的置信度为68 \%的置信度,包括来自Stellar模型的系统性不确定性。这些测量值可用于推断宇宙的年龄,在很大程度上独立于宇宙参数:我们发现宇宙年龄$ t _ {\ rm u} = 13.5^{+0.16} _ { - 0.14} _ { - 0.14}球状簇的形成时间及其不确定性。该值与$ 13.8 \ pm 0.02 $ gyr兼容,这是假设$λ$ cdm型号推断的普朗克任务所推论的宇宙模型依赖性值。

We present an estimate of the absolute age of 68 galactic globular clusters obtained by exploiting the distribution of stars in the full color-magnitude diagram. In particular, we jointly estimate the absolute age, distance, reddening, metallicity ([Fe/H]) and [$α$/Fe] of each cluster, imposing priors motivated by independent observations; we also estimate possible systematics from stellar modeling. Our derived distances for the globular cluster sample are in agreement with those obtained from GAIA using main-sequence dwarf stars (where available), and the inferred ages are in good agreement with those previously published. The novelty of our approach is that, with the adopted priors, we are able to estimate robustly these parameters from the globular cluster color-magnitude diagram. We find that the average age of the oldest globular clusters is $t_{\rm GC}=13.32 \pm 0.1 {\rm (stat.)} \pm 0.5 {\rm (sys.)}$, at 68\% confidence level, including systematic uncertainties from stellar modeling. These measurements can be used to infer the age of the Universe, largely independently of the cosmological parameters: we find an age of the Universe $t_{\rm U}=13.5^{+0.16}_{-0.14} {\rm (stat.)} \pm 0.5 ({\rm sys.})$ at 68\% confidence level, accounting for the formation time of globular clusters and its uncertainty. This value is compatible with $13.8 \pm 0.02$ Gyr, the cosmological model-dependent value inferred by the Planck mission assuming the $Λ$CDM model.

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