English

Peak star formation efficiency and no missing baryons in massive spirals

Astrophysics of Galaxies 2019-06-12 v2 Cosmology and Nongalactic Astrophysics

Abstract

It is commonly believed that galaxies use, throughout the Hubble time, a very small fraction of the baryons associated to their dark matter halos to form stars. This so-called low "star formation efficiency" fM/fbMhalof_\star\equiv M_\star/f_{\rm b} M_{\rm halo}, where fbΩb/Ωcf_{\rm b}\equiv\Omega_{\rm b}/\Omega_{\rm c} is the cosmological baryon fraction, is expected to reach its peak at nearly LL^\ast (at efficiency 20%\approx 20\%) and decline steeply at lower and higher masses. We have tested this using a sample of nearby star-forming galaxies, from dwarfs (M107MM_\star\simeq 10^7 M_\odot) to high-mass spirals (M1011MM_\star\simeq 10^{11} M_\odot) with HI rotation curves and 3.6μ\mum photometry. We fit the observed rotation curves with a Bayesian approach by varying three parameters, stellar mass-to-light ratio, halo concentration and mass. We found two surprising results: 1) the star formation efficiency is a monotonically increasing function of MM_\star with no sign of a decline at high masses, and 2) the most massive spirals (M13×1011MM_\star\simeq 1-3 \times 10^{11} M_\odot) have f0.31f_\star\approx 0.3-1, i.e. they have turned nearly all the baryons associated to their haloes into stars. These results imply that the most efficient galaxies at forming stars are massive spirals (not LL^\ast galaxies), they reach nearly 100% efficiency and thus, once both their cold and hot gas is considered into the baryon budget, they have virtually no missing baryons. Moreover, there is no evidence of mass quenching of the star formation occurring in galaxies up to halo masses of Mhaloafew×1012MM_{\rm halo}\approx {\rm a\, few}\times 10^{12} M_\odot.

Keywords

Cite

@article{arxiv.1812.05099,
  title  = {Peak star formation efficiency and no missing baryons in massive spirals},
  author = {Lorenzo Posti and Filippo Fraternali and Antonino Marasco},
  journal= {arXiv preprint arXiv:1812.05099},
  year   = {2019}
}

Comments

accepted for publication in A&A

R2 v1 2026-06-23T06:40:34.118Z