Simulations of globular clusters within their parent galaxies: Metallicity spreads and anomalous precursor populations
arXiv:2112.13971 · doi:10.1093/mnras/stab2171
Abstract
Recent observations of globular clusters (GCs) suggest that elemental abundance variations may exist between first-generation (1G) stars. We propose that metal abundance ('metallicity') spreads within GC forming giant molecular clouds (GMCs) can influence the iron abundances of future cluster members. To investigate this, we use original hydrodynamical simulations to model GMC formation in a high redshift dwarf galaxy. Our simulations self-consistently model physical processes such as stellar feedback, dust formation and destruction, and molecular gas formation on dust grains, making them well suited to the study of GMC formation. We conclude that iron abundance variations in GMCs are due to the merging of gas clumps and self-enrichment processes. The metallicity dispersions of GC forming clumps is ~0.1 dex, reflecting a growing number of studies that claim a non-zero dispersion within GCs. The galactic gas fraction is a key parameter for the formation of clumps and the metallicity 'floor' observed for both Galactic and extragalactic GCs are associated with the parent galaxy's capacity to form massive GMCs. Finally, we argue that GMCs have the potential to trap surrounding metal-poor galactic disc stars, which we interpret as a precursor population (0G). These low metallicity stars are representative of the [Fe/H] value of the host dwarf and thus the chemistry of this 0G may be a fossilized record of the parent galaxy. These results depend on the initial metallicity and radial gradient of the galaxy, the threshold gas density for star formation, and the star formation prescription.
Published in MNRAS, 20 pages, 16 figures
References in corpus (41)
- The NumPy array: a structure for efficient numerical computation
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Cold Dark Clouds: The Initial Conditions for Star Formation
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. I. Overview of the Project and Detection of Multiple Stellar Populations
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. IX. The Atlas of Multiple Stellar Populations
- Spectroscopic and Photometric evidence of two stellar populations in the Galactic Globular Cluster NGC6121 (M4)
- What is a globular cluster? An observational perspective
- A stellar census in globular clusters with MUSE: The contribution of rotation to cluster dynamics studied with 200 000 stars
- Paving the way for the JWST: witnessing globular cluster formation at z>3
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. II. The seven stellar populations of NGC7089 (M2)
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XIX. A Chemical Tagging of the Multiple Stellar Populations Over the Chromosome Maps
- The origin of the Milky Way globular clusters
- ALMA Observations of the Antennae Galaxies: I. A New Window on a Prototypical Merger
- Multiple populations in globular clusters and their parent galaxies
- Disruption of giant molecular clouds and formation of bound star clusters under the influence of momentum stellar feedback
- Incorporating the molecular gas phase in galaxy-size numerical simulations: first applications in dwarf galaxies
- The Outer Envelopes of Globular Clusters. II. NGC 1851, NGC 5824 and NGC 1261
- Dust-regulated galaxy formation and evolution:A new chemodynamical model with live dust particles
- Constraining globular cluster formation through studies of young massive clusters - V. ALMA observations of clusters in the Antennae
- Star Formation and Clumps in Cosmological Galaxy Simulations with Radiation Pressure Feedback
- An old, metal-poor globular cluster in Sextans A and the metallicity floor of globular cluster systems
- The tidal remnant of an unusually metal-poor globular cluster
- The Relationship Between Globular Cluster Mass, Metallicity, and Light Element Abundance Variations
- The origin of the spurious iron spread in the globular cluster NGC 3201
- The minimum metallicity of globular clusters and its physical origin -- implications for the galaxy mass-metallicity relation and observations of proto-globular clusters at high redshift
- Stellar envelopes of globular clusters embedded in dark mini-haloes
- Chemical abundances along the 1G sequence of the chromosome maps: The Globular Cluster NGC 3201
- Multiple populations in massive star clusters under the magnifying glass of photometry: Theory and tools
- The Most Metal-poor Stars in Omega Centauri (NGC 5139)
- Evolution of star cluster systems in isolated galaxies: first results from direct -body simulations
- Is helium the key parameter in the extended color spread of the first generation stars in M3?
- Globular cluster formation with multiple stellar populations: self-enrichment in fractal massive molecular clouds
- Empirical estimates of the Na-O anti-correlation in 95 Galactic globular clusters
- Cosmic evolution of dust in galaxies: Methods and preliminary results
- Constant light element abundances suggest that the extended P1 in NGC 2808 is not a consequence of CNO-cycle nucleosynthesis
- Simulations of globular clusters within their parent galaxies: multiple stellar populations and internal kinematics
- The role of dust destruction and dust growth in the evolution of the interstellar medium
- The loss of the intra-cluster medium in globular clusters
- The search for extratidal star candidates around Galactic globular clusters NGC 2808, NGC 6266, and NGC 6397 with {\textit{Gaia}} DR2 astrometry
- Photoelectric heating effects on the evolution of luminous disk galaxies
- The Phoenix stellar stream rose from the ashes of an ancient star cluster
Cited by in corpus (5)
- Peeking beneath the precision floor I: metallicity spreads and multiple elemental dispersions in the globular clusters NGC 288 and NGC 362
- Peeking beneath the precision floor -- II. Probing the chemo-dynamical histories of the potential globular cluster siblings, NGC 288 and NGC 362
- Impact of Radiation Feedback on the Formation of Globular Cluster Candidates during Cloud-Cloud Collisions
- Star cluster formation from giant molecular clouds in the Small Magellanic Cloud about 2 Gyr ago: their origin, structures, and kinematics
- Constraining the original composition of the gas forming first-generation stars in globular clusters