English

Stochastic star formation in early galaxies: JWST implications

Astrophysics of Galaxies 2023-09-06 v3 Cosmology and Nongalactic Astrophysics

Abstract

The star formation rate (SFR) in high redshift galaxies is expected to be time-variable due to competing physical processes. Such stochastic variability might boost the luminosity of galaxies, possibly explaining the over-abundance seen at z10z\gtrsim 10 by JWST. We aim at quantifying the amplitude and timescales of such variability, and identifying the key driving physical processes. We select 245 z=7.7z=7.7 galaxies with stellar mass 5×106M/M5×10105\times 10^{6}\lesssim M_\star/{\rm M}_\odot\lesssim 5\times 10^{10} from SERRA, a suite of high-resolution, radiation-hydrodynamic cosmological simulations. After fitting the average SFR trend, SFR\langle {\rm SFR} \rangle, we quantify the time-dependent variation, δ(t)log[SFR/SFR]\delta(t) \equiv \log [\rm SFR/\langle {\rm SFR} \rangle] for each system, and perform a periodogram analysis to search for periodicity modulations. We find that δ(t)\delta(t) is distributed as a zero-mean Gaussian, with standard deviation σδ0.24\sigma_\delta \simeq 0.24 (corresponding to a UV magnitude s.d. σUV0.61\sigma_{\rm UV} \simeq 0.61) that is independent of MM_\star. However, the modulation timescale increases with stellar mass: tδ(9,50,100)Myrt_\delta \sim (9, 50, 100)\, \rm Myr for M(0.1,1,5)×109MM_\star \sim (0.1, 1, 5)\times 10^9\, {\rm M}_\odot, respectively. These timescales are imprinted on the SFR by different processes: (i) photoevaporation, (ii) supernova explosions, and (iii) cosmological accretion/merging dominating in low, intermediate, and high mass systems, respectively. The predicted SFR variations cannot account for the required z10z\gtrsim 10 UV luminosity function boost. Other processes, such as radiation-driven outflows clearing the dust, must then be invoked to explain the enhanced luminosity of super-early systems.

Keywords

Cite

@article{arxiv.2307.03219,
  title  = {Stochastic star formation in early galaxies: JWST implications},
  author = {A. Pallottini and A. Ferrara},
  journal= {arXiv preprint arXiv:2307.03219},
  year   = {2023}
}

Comments

5 pages, 4 figures, accepted by A&A

R2 v1 2026-06-28T11:24:00.860Z