Effects of physical conditions on the stellar initial mass function: The low-metallicity star-forming region Sh 2-209
arXiv:2402.09405 · doi:10.1051/0004-6361/202347619
Abstract
Recent work suggested that the variation of the initial mass function (IMF) of stars depends on the physical conditions, notably, the metallicity and gas density. We investigated the properties of two clusters, namely the main cluster (MC) and the subcluster (SC), in the low-metallicity HII region Sh 2-209 (S209) based on recently derived IMFs. We tested three previously published correlations using previous observations: the top-heaviness of the IMF in dependence on metallicity, the half-mass radius, and the most massive star in dependence on the stellar mass of the embedded clusters. For this region, two different galactocentric distances, namely 10.5 kpc and 18 kpc, were considered, where an age-distance-degeneracy was found for the previously determined IMF to be consistent with other formulated metallicity and density dependent IMFs. The determined half-mass radius (0.080 +/- 0.005) pc and the embedded cluster density (0.2 +/- 0.1) 10^6 Msun pc^-3 for the MC with an age of 0.5 Myr in S209 assuming a galactocentric distance of 18 kpc support the assumption that a low-metallicity environment results in a denser cluster, which leads to a top-heavy IMF. Thus, all three tests are consistent with the previously published correlations. The results for S209 are placed in the context with the IMF determination within the metal-poor cluster in the star-forming region NGC 346 in the Small Magellanic Cloud.
Latex, A&A published, 10 pages, 10 figures, revised version contains small lay out adjustments for agreement with published version
References in corpus (42)
- Embedded Clusters in Molecular Clouds
- Binary interaction dominates the evolution of massive stars
- A Universal Stellar Initial Mass Function? A Critical Look at Variations
- The Luminosity & Mass Function of the Trapezium Cluster: From B stars to the Deuterium Burning Limit
- The maximum stellar mass, star-cluster formation and composite stellar populations
- Evidence for top-heavy stellar initial mass functions with increasing density and decreasing metallicity
- An excess of massive stars in the local 30 Doradus starburst
- The stellar and sub-stellar IMF of simple and composite populations
- Inverse dynamical population synthesis: Constraining the initial conditions of young stellar clusters by studying their binary populations
- On the metallicity of open clusters. III. Homogenised sample
- The Initial Mass Function of the Massive Star-forming Region NGC 3603 from Near-Infrared Adaptive Optics observations
- The Spitzer Space Telescope Survey of the Orion A and B Molecular Clouds II: the Spatial Distribution and Demographics of Dusty Young Stellar Objects
- The impact of the metallicity and star formation rate on the time-dependent galaxy-wide stellar initial mass function
- A top-heavy stellar initial mass function in starbursts as an explanation for the high mass-to-light ratios of ultra compact dwarf galaxies
- Dynamical ejections of massive stars from young star clusters under diverse initial conditions
- The Dawes Review 8: Measuring the Stellar Initial Mass Function
- Evidence for Two Phases of Galaxy Formation from Radial Trends in the Globular Cluster System of NGC 1407
- Dense Stellar Populations: Initial Conditions
- Dependency of dynamical ejections of O stars on the masses of very young star clusters
- Low-mass X-ray binaries indicate a top-heavy stellar initial mass function in ultra compact dwarf galaxies
- The Stellar Mass Distribution in the Giant Star Forming Region NGC 346
- Chemical composition of the Taurus-Auriga association
- Dynamical population synthesis: Constructing the stellar single and binary contents of galactic field populations
- The influence of multiple stars on the high-mass stellar initial mass function and age-dating of young massive star clusters
- On the initial binary population for star cluster simulations
- The Low-mass Stellar Population in L1641: Evidence for Environmental Dependence of the Stellar Initial Mass Function
- The Close Binary Properties of Massive Stars in the Milky Way and Low-Metallicity Magellanic Clouds
- A CGPS Look at the Spiral Structure of the Outer Milky Way I: Distances and Velocities to Star Forming Regions
- Stellar Abundance Maps of the Milky Way Disk
- Metallicity of low-mass stars in Orion
- The most massive stars in very young star clusters with a limited mass: Evidence favours significant self-regulation in the star formation processes
- The Initial Mass Function and Young Brown Dwarf Candidates in NGC 2264. IV. The Initial Mass Function and Star Formation History
- A discontinuity in the low-mass IMF - the case of high multiplicity
- The Magellanic Bridge cluster NGC 796: Deep optical AO imaging reveals the stellar content and initial mass function of a massive open cluster
- Stellar wind properties of the nearly complete sample of O stars in the low metallicity young star cluster NGC346 in the SMC galaxy
- Unresolved versus resolved: testing the validity of young simple stellar population models with VLT/MUSE observations of NGC 3603
- The Star-forming Region NGC 346 in the Small Magellanic Cloud with Hubble Space Telescope ACS Observations. II. Photometric Study of the Intermediate-Age Star Cluster BS 90
- Formation of Very Young Massive Clusters and implications for globular clusters
- Ongoing hierarchical massive cluster assembly: the LISCA II structure in the Perseus complex
- Mass function of a young cluster in a low-metallicity environment. Sh 2-209
- The giants that were born swiftly -- Implications of the top-heavy stellar initial mass function on the birth conditions of globular clusters
- Multiwavelength Observations of Massive Stellar Cluster Candidates in the Galaxy