English

SIMBA-C: An updated chemical enrichment model for galactic chemical evolution in the SIMBA simulation

Astrophysics of Galaxies 2023-08-15 v2

Abstract

We introduce a new chemical enrichment and stellar feedback model into GIZMO, using the SIMBA sub-grid models as a base. Based on the state-of-the-art chemical evolution model of Kobayashi et al., SIMBA-C tracks 34 elements from H\rightarrowGe and removes SIMBA's instantaneous recycling approximation. Furthermore, we make some minor improvements to SIMBA's base feedback models. SIMBA-C provides significant improvements on key diagnostics such as the knee of the z=0z=0 galaxy stellar mass function, the faint end of the main sequence, and the ability to track black holes in dwarf galaxies. SIMBA-C also matches better with recent observations of the mass-metallicity relation at z=0,2z=0,2. By not assuming instantaneous recycling, SIMBA-C provides a much better match to galactic abundance ratio measures such as [O/Fe] and [N/O]. SIMBA-C thus opens up new avenues to constrain feedback models using detailed chemical abundance measures across cosmic time.

Keywords

Cite

@article{arxiv.2308.03436,
  title  = {SIMBA-C: An updated chemical enrichment model for galactic chemical evolution in the SIMBA simulation},
  author = {Renier T. Hough and Douglas Rennehan and Chiaki Kobayashi and S. Ilani Loubser and Romeel Davé and Arif Babul and Weiguang Cui},
  journal= {arXiv preprint arXiv:2308.03436},
  year   = {2023}
}

Comments

16 Pages, 9 Figure, 1 Table, Accepted for MNRAS publication: 8 August 2023, doi:10.1093/mnras/stad2394