Globular Cluster formation in a collapsing supershell
arXiv:1708.05053 · doi:10.1007/s10509-017-3165-1
Abstract
Primordial clouds are supposed to host the so-called population III stars. These stars are very massive and completely metal-free. The final stage of the life of population III stars with masses between 130 and 260 solar masses is a very energetic hypernova explosion. A hypernova drives a shock, behind which a spherically symmetric very dense supershell forms, which might become gravitationally unstable, fragment, and form stars. In this paper we study under what conditions can an expanding supershell become gravitationally unstable and how the feedback of these supershell stars (SSSs) affects its surroundings. We simulate, by means of a 1-D Eulerian hydrocode, the early evolution of the primordial cloud after the hypernova explosion, the formation of SSSs, and the following evolution, once the SSSs start to release energy and heavy elements into the interstellar medium. Our results indicate that a shell, enriched with nucleosynthetic products from SSSs, propagates inwards, towards the center of the primordial cloud. In a time span of a few Myr, this inward-propagating shell reaches a distance of only a few parsec away from the center of the primordial cloud. Its density is extremely high and its temperature very low, thus the conditions for a new episode of star formation are achieved. We study what fraction of these two distinct populations of stars can remain bound and survive until the present day. We study also under what conditions can this process repeat and form multiple stellar populations. We extensively discuss whether the proposed scenario can help to explain some open questions of the formation mechanism of globular clusters.
15 pages, 7 figures, published on Ap&SS. Replaced after editorial corrections
References in corpus (18)
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. IX. The Atlas of Multiple Stellar Populations
- The Effects of Stellar Rotation. II. A Comprehensive Set of Starburst99 Models
- Spectroscopic and Photometric evidence of two stellar populations in the Galactic Globular Cluster NGC6121 (M4)
- Origin of the abundance patterns in Galactic globular clusters: constraints on dynamical and chemical properties of globular clusters
- Multiple stellar populations in three rich Large Magellanic Cloud star clusters
- Multiple stellar populations in Magellanic Clouds clusters. I. An ordinary feature for intermediate age globulars in the LMC?
- Iron and s-elements abundance variations in NGC5286: comparison with anomalous globular clusters and Milky Way satellites
- Iron and neutron-capture element abundance variations in the globular cluster M2 (NGC 7089)
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. II. The seven stellar populations of NGC7089 (M2)
- The Search for Multiple Populations in Magellanic Cloud Clusters II: The Detection of Multiple Populations in Three Intermediate-Age SMC Clusters
- Helium and Multiple Populations in the Massive Globular Cluster NGC6266 (M62)
- Observational Constraints on First-Star Nucleosynthesis. II. Spectroscopy of an Ultra Metal-Poor CEMP-no Star
- The primordial and evolutionary abundance variations in globular-cluster stars: a problem with two unknowns
- Globular Cluster Formation at High Density: A model for Elemental Enrichment with Fast Recycling of Massive-Star Debris
- The formation of secondary stellar generations in massive young star clusters from rapidly cooling shocked stellar winds
- Chemical Complexity in the Eu-enhanced Monometallic Globular Cluster NGC 5986
- Fragmentation of vertically stratified gaseous layers: monolithic or coalescence-driven collapse