Impact of metallicity on the evolution of young star clusters
arXiv:1301.4227 · doi:10.1093/mnras/stt119
Abstract
We discuss the results of N-body simulations of intermediate-mass young star clusters (SCs) with three different metallicities (Z=0.01, 0.1 and 1 Zsun), including metallicity-dependent stellar evolution recipes and metallicity-dependent prescriptions for stellar winds and remnant formation. The initial half-mass relaxation time of the simulated young SCs (~10 Myr) is comparable to the lifetime of massive stars. We show that mass-loss by stellar winds influences the reversal of core collapse and the expansion of the half-mass radius. In particular, the post-collapse re-expansion of the core is weaker for metal-poor SCs than for metal-rich SCs, because the former lose less mass (through stellar winds) than the latter. As a consequence, the half-mass radius expands faster in metal-poor SCs. The difference in the half-light radius between metal-poor SCs and metal-rich SCs is (up to a factor of two) larger than the difference in the half-mass radius.
9 pages, 9 figures, 2 tables, MNRAS, accepted
References in corpus (13)
- The most massive stars in the Arches cluster
- The distinction between star clusters and associations
- Low metallicity and ultra-luminous X-ray sources in the Cartwheel galaxy
- The radial distribution of blue straggler stars and the nature of their progenitors
- Ratios of star cluster core and half-mass radii: a cautionary note on intermediate-mass black holes in star clusters
- Dynamics of stellar black holes in young star clusters with different metallicities - I. Implications for X-ray binaries
- A direct N-body model of core-collapse and core oscillations
- N-body models of globular clusters: metallicity, half-light radii and mass-to-light ratios
- Star Cluster Ecology: VII The evolution of young dense star clusters containing primordial binaries
- Deep Chandra Monitoring Observations of NGC 4649: II. Wide-Field Hubble Space Telescope Imaging of the Globular Clusters
- Mass-loss predictions for evolved very metal-poor massive stars
- Multiwavelength Observations of Massive Stellar Cluster Candidates in the Galaxy
- MYStIX First Results: Spatial Structures of Massive Young Stellar Clusters
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- On the formation of compact, massive sub-systems in stellar clusters and its relation with intermediate mass black holes
- A critical look at the merger scenario to explain multiple populations and rotation in iron-complex globular clusters
- Dynamics of binary black holes in low-mass young star clusters
- Evolution of fractality and rotation in embedded star clusters
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- Roche-lobe overflow systems powered by black holes in young star clusters: the importance of dynamical exchanges
- A deficit of ultraluminous X-ray sources in luminous infrared galaxies
- Predictions of a simple parametric model of hierarchical black hole mergers
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- The Gaia-ESO Survey: N-body modelling of the Gamma Velorum cluster
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- FROST-CLUSTERS -- III. Metallicity-dependent intermediate mass black hole formation by runaway collisions in dense star clusters
- Massive Star Clusters in the Semi-Analytical Galaxy Formation Model L-Galaxies 2020