The SUNBIRD survey: the K-band luminosity functions of young massive clusters in intensely star-forming galaxies

Author:

Randriamanakoto Z12ORCID,Väisänen P13ORCID,Ranaivomanana P4ORCID,Ramphul R1,Kankare E5,Mattila S5,Ryder S D67ORCID,Kotilainen J58

Affiliation:

1. South African Astronomical Observatory, P.O. Box 9, Observatory 7935, South Africa

2. Department of Physics, University of Antananarivo, P.O. Box 906, Antananarivo, 101, Madagascar

3. Southern African Large Telescope, P.O. Box 9 Observatory, 7935, Cape Town, South Africa

4. Department of Astrophysics/IMAPP, Radboud University, P.O. 9010, NL-6500 GL Nijmegen, the Netherlands

5. Department of Physics and Astronomy, University of Turku, FI-20014 Turku, Finland

6. School of Mathematical and Physical Sciences, Macquarie University, Sydney, NSW 2109, Australia

7. Astronomy, Astrophysics and Astrophotonics Research Centre, Macquarie University, Sydney, NSW 2109, Australia

8. Finnish Centre for Astronomy with ESO (FINCA), University of Turku, Quantum, Vesilinnantie 5, FI-20014, Finland

Abstract

ABSTRACT Strongly star-forming galaxies are prolific in producing the young and most massive star clusters still forming today. This work investigates the star cluster luminosity functions (CLFs, dN/dL ∝ L−α) of 26 starburst and luminous infrared galaxies taken from the SUNBIRD survey. The targets were imaged using near-infrared K-band adaptive optics systems. Single power-law fits of the derived CLFs result in a slope α ranging between 1.53 and 2.41, with the median and average of 1.87 ± 0.23 and 1.93 ± 0.23, respectively. Possible biases such as blending effects and the choice of binning should only flatten the slope by no more than ∼0.15, especially for cases where the luminosity distance of the host galaxy is below 100 Mpc. Results from this follow-up study strengthen the conclusion from our previous work: the CLF slopes are shallower for strongly star-forming galaxies in comparison to those with less intense star formation activity. There is also a (mild) correlation between α and both the host galaxy’s star formation rate (SFR) and SFR density (ΣSFR), i.e. the CLF flattens with an increasing SFR and ΣSFR. Finally, we also find that CLFs on subgalactic scales associated with the nuclear regions of cluster-rich targets (N ≈ 300) have typically shallower slopes than the ones of the outer field by ∼0.5. Our analyses suggest that the extreme environments of strongly star-forming galaxies are likely to influence the cluster formation mechanisms and ultimately their physical properties.

Funder

National Research Foundation

Academy of Finland

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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