Globular Cluster Formation at High Density: A model for Elemental Enrichment with Fast Recycling of Massive-Star Debris
arXiv:1701.01034 · doi:10.3847/1538-4357/836/1/80
Abstract
The self-enrichment of massive star clusters by p-processed elements is shown to increase significantly with increasing gas density as a result of enhanced star formation rates and stellar scatterings compared to the lifetime of a massive star. Considering the type of cloud core where a globular cluster might have formed, we follow the evolution and enrichment of the gas and the time dependence of stellar mass. A key assumption is that interactions between massive stars are important at high density, including interactions between massive stars and massive star binaries that can shred stellar envelopes. Massive-star interactions should also scatter low-mass stars out of the cluster. Reasonable agreement with the observations is obtained for a cloud core mass of ~4x10^6 M_sun and a density of ~2x10^6 cm^{-3}. The results depend primarily on a few dimensionless parameters, including, most importantly, the ratio of the gas consumption time to the lifetime of a massive star, which has to be low, ~10%, and the efficiency of scattering low-mass stars per unit dynamical time, which has to be relatively large, such as a few percent. Also for these conditions, the velocity dispersions of embedded globular clusters should be comparable to the high gas dispersions of galaxies at that time, so that stellar ejection by multi-star interactions could cause low-mass stars to leave a dwarf galaxy host altogether. This could solve the problem of missing first-generation stars in the halos of Fornax and WLM.
ApJ, in press, 16 pages, 3 figures
References in corpus (27)
- Fast rotating massive stars and the origin of the abundance patterns in galactic globular clusters
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- Slow Star Formation in Dense Gas: Evidence and Implications
- The R136 star cluster hosts several stars whose individual masses greatly exceed the accepted 150 Msun stellar mass limit
- Filamentary structure of star-forming complexes
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. IX. The Atlas of Multiple Stellar Populations
- On the self-enrichment scenario of galactic globular clusters: Constraints on the IMF
- Origin of the abundance patterns in Galactic globular clusters: constraints on dynamical and chemical properties of globular clusters
- Iron and s-elements abundance variations in NGC5286: comparison with anomalous globular clusters and Milky Way satellites
- Chemical composition and constraints on mass loss for globular clusters in dwarf galaxies: WLM and IKN
- CNO abundances in the globular clusters NGC 1851 and NGC 6752
- The Physical Conditions in a Pre Super Star Cluster Molecular Cloud in the Antennae Galaxies
- Constraining globular cluster formation through studies of young massive clusters - II. A Single Stellar Population Young Massive Cluster in NGC 34
- The primordial and evolutionary abundance variations in globular-cluster stars: a problem with two unknowns
- Accretion of pristine gas and dilution during the formation of multiple-population globular clusters
- Constraining Globular Cluster Formation Through Studies of Young Massive Clusters - IV. Testing the Fast Rotating Massive Star Scenario
- Constraining globular cluster formation through studies of young massive clusters - III. A lack of gas and dust in massive stellar clusters in the LMC and SMC
- Cloud Structure of Galactic OB Cluster Forming Regions from Combining Ground and Space Based Bolometric Observations
- Variations in the lithium abundances of turn off stars in the globular cluster 47 Tuc
- Gas expulsion vs gas retention: what process dominates in young massive clusters?
- Three discrete groups with homogeneous chemistry along the red giant branch in the globular cluster NGC 2808
- The formation of secondary stellar generations in massive young star clusters from rapidly cooling shocked stellar winds
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. X. The radial distribution of stellar populations in NGC 2808
- Dynamical Constraints on the Origin of Multiple Stellar Populations in Globular Clusters
- A broad perspective on multiple abundance populations in the globular cluster NGC 1851
- Lithium and oxygen in globular cluster dwarfs and the early disc accretion scenario
- Clearing the Dust from Globular Clusters