The Stellar Content of NGC~3603 Revisited: Is the IMF Top Heavy?

Fuente: arXiv
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Autores principales: Massey, Philip, Morrell, Nidia I., Neugent, Kathryn F., Herzog, Monica, Drout, Maria R., O'Brien, Caitlin
Formato: Preprint
Publicado: 2025
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author Massey, Philip
Morrell, Nidia I.
Neugent, Kathryn F.
Herzog, Monica
Drout, Maria R.
O'Brien, Caitlin
author_facet Massey, Philip
Morrell, Nidia I.
Neugent, Kathryn F.
Herzog, Monica
Drout, Maria R.
O'Brien, Caitlin
contents Studies of the resolved stellar populations of young massive clusters have shown that the slope of the initial mass function appears to be the same everywhere, with no dependence on stellar density or metallicity. At the same time, studies of integrated properties of galaxies usually conclude that the IMF does vary, and must be top-heavy in starburst regions. In order to investigate this, we have carried out a long-term project to characterize the massive star content of NGC 3603, the nearest giant HII region, known to have a rich population of massive stars. We used both ground-based and Hubble Space Telescope (HST) imaging to obtain photometry, and employed Gaia to establish membership. We obtained spectra of 128 stars using the Magellan 6.5~m telescope and HST, and combine these data to produce a reddening map. After analyzing the data in the same way as we have for 25 other star-forming regions in the Milky Way and the Magellanic Clouds, we find that the IMF slope of NGC 3603 is quite normal compared to other clusters, with Gamma=-0.9+/-0.1. If anything, there are fewer very high mass (>65Mo) stars than one would expect by extrapolation from lower masses. This slope is also indistinguishable from what several studies have shown for R136 in the LMC, an even richer region. We speculate that the depreciation of the highest mass bins in NGC 3603, but not in R136, may indicate that it is harder to form extremely massive stars at the higher metallicity of the Milky Way compared to that of the LMC.
format Preprint
id arxiv_https___arxiv_org_abs_2509_25099
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Stellar Content of NGC~3603 Revisited: Is the IMF Top Heavy?
Massey, Philip
Morrell, Nidia I.
Neugent, Kathryn F.
Herzog, Monica
Drout, Maria R.
O'Brien, Caitlin
Solar and Stellar Astrophysics
Astrophysics of Galaxies
Studies of the resolved stellar populations of young massive clusters have shown that the slope of the initial mass function appears to be the same everywhere, with no dependence on stellar density or metallicity. At the same time, studies of integrated properties of galaxies usually conclude that the IMF does vary, and must be top-heavy in starburst regions. In order to investigate this, we have carried out a long-term project to characterize the massive star content of NGC 3603, the nearest giant HII region, known to have a rich population of massive stars. We used both ground-based and Hubble Space Telescope (HST) imaging to obtain photometry, and employed Gaia to establish membership. We obtained spectra of 128 stars using the Magellan 6.5~m telescope and HST, and combine these data to produce a reddening map. After analyzing the data in the same way as we have for 25 other star-forming regions in the Milky Way and the Magellanic Clouds, we find that the IMF slope of NGC 3603 is quite normal compared to other clusters, with Gamma=-0.9+/-0.1. If anything, there are fewer very high mass (>65Mo) stars than one would expect by extrapolation from lower masses. This slope is also indistinguishable from what several studies have shown for R136 in the LMC, an even richer region. We speculate that the depreciation of the highest mass bins in NGC 3603, but not in R136, may indicate that it is harder to form extremely massive stars at the higher metallicity of the Milky Way compared to that of the LMC.
title The Stellar Content of NGC~3603 Revisited: Is the IMF Top Heavy?
topic Solar and Stellar Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2509.25099