The mmax-Mecl relation in the LEGUS clusters
arXiv:2603.24697 · doi:10.1051/0004-6361/202556969
Abstract
The relation between the maximum stellar mass in a very young cluster (mmax) and the total stellar mass of the cluster (Mecl), known as the mmax-Mecl relation, remains debated in the literature. To test the validity of this relation, we modelled young star clusters with masses between 102.5 and 105.0 M_sun and ages of 1-4 Myr using the galIMF code, in which stellar masses are optimally sampled from a varying initial stellar mass function. We compared the results with literature observations of extragalactic young star clusters. We incorporated stellar evolution via PARSEC and COLIBRI tracks and computed Halpha luminosities using the Pegase code. To account for dynamical ejections, we stochastically removed stars based on their spectral type, following previous N-body simulations. Additional sources of scatter, including uncertainties in age determination and contamination by field stars, were considered. Our results indicate that, under the assumptions explored here, optimal sampling is consistent with the extragalactic star cluster observations considered, whereas purely random sampling produces distributions that are not in agreement. These findings support a highly self-regulated interpretation of cluster formation in which stellar masses align optimally with the initial mass function rather than being drawn independently at random.
17 pages, 13 figures, accepted by A&A
References in corpus (49)
- The chemical composition of the Sun
- Galactic Stellar and Substellar Initial Mass Function
- PARSEC: stellar tracks and isochrones with the PAdova and TRieste Stellar Evolution Code
- A new generation of PARSEC-COLIBRI stellar isochrones including the TP-AGB phase
- Improving PARSEC models for very low mass stars
- PARSEC evolutionary tracks of massive stars up to at metallicities 0.00010.04
- Galactic-Field IMFs of Massive Stars
- New PARSEC evolutionary tracks of massive stars at low metallicity: testing canonical stellar evolution in nearby star forming dwarf galaxies
- The maximum stellar mass, star-cluster formation and composite stellar populations
- An upper limit to the masses of stars
- Evidence for top-heavy stellar initial mass functions with increasing density and decreasing metallicity
- The stellar and sub-stellar IMF of simple and composite populations
- Evidence for a fundamental stellar upper mass limit from clustered star formation
- The relation between the most-massive star and its parental star cluster mass
- Inverse dynamical population synthesis: Constraining the initial conditions of young stellar clusters by studying their binary populations
- Constraining the thermally-pulsing asymptotic giant branch phase with resolved stellar populations in the Small Magellanic Cloud
- The Variation of Integrated Star IMFs among Galaxies
- Constraining the thermally pulsing asymptotic giant branch phase with resolved stellar populations in the Large Magellanic Cloud
- The impact of the metallicity and star formation rate on the time-dependent galaxy-wide stellar initial mass function
- From star clusters to dwarf galaxies: The properties of dynamically hot stellar systems
- 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
- Converting H Luminosities into Star Formation Rates
- Limits on the primordial stellar multiplicity
- The mmax-Mecl relation, the IMF and IGIMF: probabilistically sampled functions?
- The massive star binary fraction in young open clusters I. NGC 6231 revisited
- Mass Segregation in Young Magellanic Clouds Star Clusters: Four Clusters observed with HST
- The massive star binary fraction in young open clusters - II. NGC 6611 (Eagle Nebula)
- The optimally-sampled galaxy-wide stellar initial mass function - Observational tests and the publicly available GalIMF code
- Dependency of dynamical ejections of O stars on the masses of very young star clusters
- Mass segregation in very young open clusters -- A case study of NGC 2244 and NGC 6530
- Low-mass X-ray binaries indicate a top-heavy stellar initial mass function in ultra compact dwarf galaxies
- How can young massive clusters reach their present-day sizes?
- The emergence of super-canonical stars in R136-type star-burst clusters
- An IMF Study of the Dwarf Starburst Galaxy NGC 4214
- Pégase.3: A code for modeling the UV-to-IR/submm spectral and chemical evolution of galaxies with dust
- Mass distributions of star clusters for different star formation histories in a galaxy cluster environment
- The most massive stars in very young star clusters with a limited mass: Evidence favours significant self-regulation in the star formation processes
- Stellar clusterings around "Isolated" Massive YSOs in the LMC
- Do star clusters form in a completely mass-segregated way?
- On the infant weight loss of low- to intermediate-mass star clusters
- Variations in the Mass Functions of Clustered and Isolated Young Stellar Objects
- The influence of stellar-dynamical ejections and collisions on the relation between the maximum-star and star-cluster-mass
- Sampling methods for stellar masses and the mmax-Mecl relation in the starburst dwarf galaxy NGC 4214
- Tidal tails of open star clusters as probes to early gas expulsion II: Predictions for Gaia
- The effect of the environment-dependent stellar initial mass function on the photometric properties of star-forming galaxies
- Massive open star clusters using the VVV survey V. Young clusters with an OB stellar population
- The Impact of Early Massive Galaxy Formation on the Cosmic Microwave Background
- Stellar population synthesis models with a physically varying IMF