论文标题

球状簇中集群内培养基的丢失

The loss of the intra-cluster medium in globular clusters

论文作者

Chantereau, W., Biernacki, P., Martig, M., Bastian, N., Salaris, M., Teyssier, R.

论文摘要

球状簇(GC)中的恒星在其后序列演化过程中失去了无忽略的质量。然后,预计该材料将在GC内建立大量的集群内培养基(ICM)。但是,GC中观察到的气体含量低于这些预期的几个数量级。在这里,我们通过流体动力学模拟遵循这种恒星风材的演变,以试图将理论预测与观察结果调和。我们测试了文献中提出的不同机制,以清除气体,例如通过GC在银河系中培养基中的运动和紫外线源电离的电离。我们使用Code Ramses运行3D流体动力模拟,首次研究ICM在离散的多质量GC模型中的ICM演化,包括恒星风和完全辐射转移。我们发现,必须同时包含RAM压力和电离,以解释为什么在GC的核心中只观察到仅观察到非常低的电离气体。在古老的GC中运行的相同机制清除气体在年轻人时代也可能有效,这意味着年轻的GC无法保留气体并形成许多模型中假定的恒星来解释“多个种群”。但是,这种快速清除气体与年轻大型簇的观察结果一致。

Stars in globular clusters (GCs) lose a non negligible amount of mass during their post-main sequence evolution. This material is then expected to build up a substantial intra-cluster medium (ICM) within the GC. However, the observed gas content in GCs is a couple of orders of magnitude below these expectations. Here we follow the evolution of this stellar wind material through hydrodynamical simulations to attempt to reconcile theoretical predictions with observations. We test different mechanisms proposed in the literature to clear out the gas such as ram-pressure stripping by the motion of the GC in the Galactic halo medium and ionisation by UV sources. We use the code ramses to run 3D hydrodynamical simulations to study for the first time the ICM evolution within discretised multi-mass GC models including stellar winds and full radiative transfer. We find that the inclusion of both ram-pressure and ionisation is mandatory to explain why only a very low amount of ionised gas is observed in the core of GCs. The same mechanisms operating in ancient GCs that clear the gas could also be efficient at younger ages, meaning that young GCs would not be able to retain gas and form multiple generations of stars as assumed in many models to explain "multiple populations". However, this rapid clearing of gas is consistent with observations of young massive clusters.

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