English

Submillimetre galaxies as laboratories for dust grain coagulation

Astrophysics of Galaxies 2023-10-09 v1

Abstract

Coagulation in the dense interstellar medium (ISM) is an important process that determines the size of the largest grains. We use submillimetre galaxies (SMGs) as laboratories of grain coagulation, since some of them host the densest ISM on a galactic scale among various populations of galaxies known. We examine how large the grains can be in such dense environments based on the mean ISM density estimated from the observed typical dust mass density in SMGs. We also consider local density enhancement based on a model of supersonic turbulence, which is expected from strong stellar feedback. In the unlimited coagulation model, in which we do not impose any coagulation threshold velocity, grains as large as 30 μ\sim 30~\mum can form under the observationally estimated mean gas density if the Mach number of turbulence is M3\mathcal{M}\gtrsim 3. We exclude this possibility since the observed emissivity index β2\beta\simeq 2 in the far infrared (FIR) indicates that such large grains cannot actively form in SMGs. This means that coagulation does not proceed in an unlimited way: 30-μ\mum grains should have velocities larger than the coagulation threshold. If we use a coagulation threshold (upper limit) grain velocity (0.08\sim 0.08 km s1^{-1}) taken from a theoretical study, grains likely grow only up to μ\mum size, which is small enough not to affect the FIR emissivity index. The above results indicate that SMGs can be used to constrain the physical processes relevant to coagulation.

Keywords

Cite

@article{arxiv.2310.04014,
  title  = {Submillimetre galaxies as laboratories for dust grain coagulation},
  author = {Hiroyuki Hirashita and Chian-Chou Chen},
  journal= {arXiv preprint arXiv:2310.04014},
  year   = {2023}
}

Comments

8 pages, 4 figures, accepted for publication in MNRAS

R2 v1 2026-06-28T12:42:15.769Z