Universal Upper End of the Stellar Initial Mass Function in the Young and Compact LEGUS clusters
Dooseok Escher Jung, Daniela Calzetti, Matteo Messa, Mark Heyer,, Mattia Sirressi, Sean T. Linden, Angela Adamo, Rupali Chandar, Michele, Cignoni, David O. Cook, Clare L. Dobbs, Bruce G. Elmegreen, Aaron S. Evans,, Michele Fumagalli, John S. Gallagher III, Deidre A. Hunter

TL;DR
This study analyzes 375 young star clusters across five nearby galaxies to determine if the upper end of the stellar initial mass function varies with cluster mass, finding evidence for its universality.
Contribution
It provides observational evidence supporting the universal nature of the upper stellar initial mass function across different cluster masses.
Findings
uIMF shows no dependence on cluster mass
Maximum stellar mass appears universal in star clusters
Method mitigates stochastic sampling bias
Abstract
We investigate the variation in the upper end of stellar initial mass function (uIMF) in 375 young and compact star clusters in five nearby galaxies within Mpc. All the young stellar clusters (YSCs) in the sample have ages Myr and masses above 500 , according to standard stellar models. The YSC catalogs were produced from Hubble Space Telescope images obtained as part of the Legacy ExtraGalactic UV Survey (LEGUS) Hubble treasury program. They are used here to test whether the uIMF is universal or changes as a function of the cluster's stellar mass. We perform this test by measuring the H luminosity of the star clusters as a proxy for their ionizing photon rate, and charting its trend as a function of cluster mass. Large cluster numbers allow us to mitigate the stochastic sampling of the uIMF. The advantage of our approach relative to previous…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Galaxies: Formation, Evolution, Phenomena
