The link between mass distribution and starbursts in dwarf galaxies
arXiv:1504.02084 · doi:10.1038/ncomms8231
Abstract
Recent studies have shown that starburst dwarf galaxies have steeply rising rotation curves in their inner parts, pointing to a close link between the intense star formation and a centrally concentrated mass distribution (baryons and dark matter). More quiescent dwarf irregulars typically have slowly rising rotation curves, although some "compact" irregulars with steep, inner rotation curves exist. We analyze archival Hubble Space Telescope images of two nearby "compact" irregular galaxies (NGC 4190 and NGC 5204), which were selected solely on the basis of their dynamical properties and their proximity. We derive their recent star-formation histories by fitting color-magnitude diagrams of resolved stellar populations, and find that the star-formation properties of both galaxies are consistent with those of known starburst dwarfs. Despite the small sample, this strongly reinforces the notion that the starburst activity is closely related to the inner shape of the potential well.
8 pages, 4 figures, 2 tables
References in corpus (8)
- The dependence of dark matter profiles on the stellar to halo mass ratio: a prediction for cusps vs cores
- The ACS Nearby Galaxy Survey Treasury IX. Constraining asymptotic giant branch evolution with old metal-poor galaxies
- The rotation curves shapes of late-type dwarf galaxies
- Dark Matter Heating and Early Core Formation in Dwarf Galaxies
- The triggering of starbursts in low-mass galaxies
- On the Estimation of Random Uncertainties of Star Formation Histories
- HI and star formation in the most metal-deficient galaxies
- The connection between the cusp-to-core transformation and observational universalities of DM halos