English

Evolution of Dust-to-Metal Ratio in Galaxies

Astrophysics 2015-06-24 v1

Abstract

This paper investigates the evolution of the dust-to-metal ratio in galaxies based on a simple evolution model for the amount of metal and dust with infall. We take into account grain formation in stellar mass-loss gas, grain growth by the accretion of metallic atoms in a cold dense cloud, and grain destruction by SNe shocks. Especially, we propose that the accretion efficiency is independent of the star-formation history. This predicts various evolutionary tracks in the metallicity (ZZ)--dust-to-gas ratio (D\cal D) plane depending on the star-formation history. In this framework, the observed linear ZZ--D\cal D relation of nearby spiral galaxies can be interpreted as a sequence of a constant galactic age. We emphasize that an observational study of the ZZ--D\cal D relation of galaxies at z1z\sim 1 is very useful to constrain the efficiencies of dust growth and destruction. We also suggest that the Lyman break galaxies at z3z\sim 3 have a very low dust-to-metal ratio, typically \ltsim0.1\ltsim 0.1. Although the effect of infall on the evolutionary tracks in the ZZ--D\cal D plane is quite small, the dispersion of the infall rate can disturb the ZZ--D\cal D relation with a constant galactic age.

Keywords

Cite

@article{arxiv.astro-ph/0308204,
  title  = {Evolution of Dust-to-Metal Ratio in Galaxies},
  author = {Akio K. Inoue},
  journal= {arXiv preprint arXiv:astro-ph/0308204},
  year   = {2015}
}

Comments

9 pages, accepted to appear in PASJ October issue