English

Mergers, Starbursts, and Quenching in the Simba Simulation

Astrophysics of Galaxies 2019-09-16 v2

Abstract

We use the Simba cosmological galaxy formation simulation to investigate the relationship between major mergers (\leq 4:1), starbursts, and galaxy quenching. Mergers are identified via sudden jumps in stellar mass MM_* well above that expected from in situ star formation, while quenching is defined as going from specific star formation rate sSFR>tH1>t_{H}^{-1} to sSFR<0.2tH1<0.2t_{H}^{-1}, where tHt_{H} is the Hubble time. At z03z\approx 0-3, mergers show ×23\sim\times 2-3 higher SFR than a mass-matched sample of star-forming galaxies, but globally represent 1%\leq 1\% of the cosmic SF budget. At low masses, the increase in SFR in mergers is mostly attributed to an increase in the H2H_2 content, but for M1010.5MM_*\geq 10^{10.5} M_{\odot} mergers also show an elevated star formation efficiency suggesting denser gas within merging galaxies. The merger rate for star-forming galaxies shows a rapid increase with redshift (1+z)3.5\propto (1+z)^{3.5}, but the quenching rate evolves much more slowly, (1+z)0.9\propto (1+z)^{0.9}; there are insufficient mergers to explain the quenching rate at z1.5z\leq 1.5. Simba first quenches galaxies at z3z\geq 3, with a number density in good agreement with observations. The quenching timescales τq\tau_q are strongly bimodal, with `slow' quenchings (τq0.1tH\tau_q \sim 0.1t_{H}) dominating overall, but `fast' quenchings (τq0.01tH\tau_q\sim 0.01 t_H) dominating in M10101010.5MM_*\sim 10^{10}-10^{10.5}M_{\odot} galaxies, likely induced by Simba's jet-mode black hole feedback. The delay time distribution between mergers and quenching events suggests no physical connection to either fast or slow quenching. Hence, Simba predicts that major mergers induce starbursts, but are unrelated to quenching in either fast or slow mode.

Keywords

Cite

@article{arxiv.1907.12680,
  title  = {Mergers, Starbursts, and Quenching in the Simba Simulation},
  author = {Francisco Rodríguez Montero and Romeel Davé and Vivienne Wild and Daniel Anglés-Alcázar and Desika Narayanan},
  journal= {arXiv preprint arXiv:1907.12680},
  year   = {2019}
}

Comments

18 pages, 13 figures

R2 v1 2026-06-23T10:34:17.996Z