English

Dust Buried Compact Sources in the Dwarf Galaxy NGC 4449

Astrophysics of Galaxies 2023-03-29 v1

Abstract

Multi-wavelength images from the Hubble Space Telescope covering the wavelength range 0.27-1.6 μ\mum show that the central area of the nearby dwarf galaxy NGC4449 contains several tens of compact sources that are emitting in the hydrogen recombination line Paβ\beta (1.2818 μ\mum) but are only marginally detected in Hα\alpha (0.6563 μ\mum) and undetected at wavelengths λ\lambda\le0.55 μ\mum. An analysis of the spectral energy distributions (SEDs) of these sources indicates that they are likely relatively young star clusters heavily attenuated by dust. The selection function used to identify the sources prevents meaningful statistical analyses of their age, mass, and dust extinction distributions. However, these cluster candidates have ages \sim5-6 Myr and AV>_V>6 mag, according to their SED fits, and are extremely compact, with typical deconvolved radii of 1 pc. The dusty clusters are located at the periphery of dark clouds within the galaxy and appear to be partially embedded. Density and pressure considerations indicate that the HII regions surrounding these clusters may be stalled, and that pre-supernova feedback has not been able to clear the clusters of their natal cocoons. These findings are in potential tension with existing models that regulate star formation with pre-supernova feedback, since pre-supernova feedback acts on short timescales, \lesssim4 Myr, for a standard Stellar Initial Mass function. The existence of a population of dusty star clusters with ages >>4 Myr, if confirmed by future observations, paints a more complex picture for the role of stellar feedback in controlling star formation.

Keywords

Cite

@article{arxiv.2302.11117,
  title  = {Dust Buried Compact Sources in the Dwarf Galaxy NGC 4449},
  author = {Daniela Calzetti and Sean T. Linden and Timothy McQuaid and Matteo Messa and Zhiyuan Ji and Mark R. Krumholz and Angela Adamo and Bruce Elmegreen and Kathryn Grasha and Kelsey E. Johnson and Elena Sabbi and Linda Smith and Varun Bajaj},
  journal= {arXiv preprint arXiv:2302.11117},
  year   = {2023}
}

Comments

27 pages, 22 figures; accepted for publication in the Astrophysical Journal