A systematic aging method I: HII regions D118 and D119 in NGC 300
arXiv:2004.02883 · doi:10.1093/mnras/staa2428
Abstract
Accurately determining the age of H\,{ii} regions and the stars they host is as important as it is challenging. Historically the most popular method has been isochrone fitting to Hertzsprung-Russell Diagrams or Colour-Magnitude Diagrams. Here we introduce a different method for age determination using BPASS and hoki. We infer the most likely ages of the regions D118 and D119 NGC 300 to be log(age/years)=6.86 and we also deduce stellar mass and number counts by comparison with the BPASS models. We compare how our binary and single star models perform and find that the latter are unable to predict 20 per cent ( 10 per cent) of our sample. We also discuss how results obtained from isochrone fitting would differ. We conclude that ages could be underestimated by ~0.2 dex and that the limitations of the isochrone method is not solely due to the lack of binary stars. We propose that the method presented here is more reliable and more widely applicable since it can be used on smaller samples. Alongside this study, we release new hoki features to allow easy implementation of this method.
Submitted to MNRAS, comments welcome, 17 pages, 14 figures, 3 Tables
References in corpus (12)
- Binary interaction dominates the evolution of massive stars
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- The MUSE second-generation VLT instrument
- The ACS Nearby Galaxy Survey Treasury
- The Massive Star Content of NGC 3603
- Hoki: Making BPASS accessible through Python
- Binary population synthesis models for core-collapse gamma-ray burst progenitors
- The VLT-FLAMES Tarantula Survey. XXX. Red stragglers in the clusters Hodge 301 and SL 639
- Discrepancies in the ages of young star clusters; evidence for mergers?
- Ages and metallicities of circumnuclear star formation regions from Gemini IFU observations
- Molecular Cloud-scale Star Formation in NGC 300
- A Comparison of Rotating and Binary Stellar Evolution Models: Effects on Massive Star Populations
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