English

Bursting with Feedback: The Relationship between Feedback Model and Bursty Star Formation Histories in Dwarf Galaxies

Astrophysics of Galaxies 2024-07-18 v2

Abstract

We use high-resolution cosmological simulations to compare the effect of bursty star formation histories on dwarf galaxy structure for two different subgrid supernovae (SNe) feedback models in dwarf galaxies with stellar masses from 5000<5000 < M_*/M_\odot <109< 10^{9}. Our simulations are run using two distinct supernova feedback models: superbubble and blastwave. We show that both models are capable of producing galaxies that are cored and reproduce observed scaling relations for metallicity, luminosity, mass, and size. We show that continuous bursty star formation and the resulting stellar feedback are able to sustain dark matter cores in the higher dwarf galaxy mass regime, while the majority of ultra-faint and classical dwarfs retain cuspy central dark matter density profiles. We find that both subgrid SN models are able to create bursty star formation histories. We find that effective core formation peaks at M_*/M_\odot 5×103\simeq 5 \times 10^{-3} for both feedback models. Galaxies simulated with superbubble feedback peak at lower mean burstiness values relative to blastwave feedback, indicating that core formation in the superbubble sample may be less motivated by the burstiness of star formation.

Keywords

Cite

@article{arxiv.2401.06041,
  title  = {Bursting with Feedback: The Relationship between Feedback Model and Bursty Star Formation Histories in Dwarf Galaxies},
  author = {Bianca Azartash-Namin and Anna Engelhardt and Ferah Munshi and B. W. Keller and Alyson M. Brooks and Jordan Van Nest and Charlotte R. Christensen and Tom Quinn and James Wadsley},
  journal= {arXiv preprint arXiv:2401.06041},
  year   = {2024}
}

Comments

18 pages, 7 figures