English

The scaling relation between baryonic mass and stellar disc size of morphologically late-type galaxies

Astrophysics of Galaxies 2017-12-20 v1

Abstract

Here I report the scaling relation between the baryonic masses and the scale lengths of stellar discs from \sim1000 morphologically late-type galaxies. The baryonic mass-size relation is a single power-law RMb0.38R_\ast \propto M_b^{0.38} across \sim3 orders of magnitude in baryonic mass. The scatter in size at fixed baryonic mass is nearly constant and there is essentially no outlier. The baryonic mass-size relation provides a more fundamental description of the structure of the discs than the stellar mass-size relation. The slope and the scatter of the stellar mass-size relation can be understood in the context of the baryonic mass-size relation. For gas-rich galaxies, the stars is no longer a good tracer for the baryons. High baryonic mass, gas-rich galaxies appear to be much larger at fixed stellar mass because most of the baryonic content is gas. The stellar mass-size relation thus deviates from the power law baryonic relation and the scatter increases at the low stellar mass end. Those extremely gas-rich low-mass galaxies can be classified as Ultra Diffuse Galaxies based on the structure.

Keywords

Cite

@article{arxiv.1710.06440,
  title  = {The scaling relation between baryonic mass and stellar disc size of morphologically late-type galaxies},
  author = {Po-Feng Wu},
  journal= {arXiv preprint arXiv:1710.06440},
  year   = {2017}
}

Comments

9 pages, 7 figure. Color figures. Accepted by MNRAS