English

The KMOS$^\mathrm{3D}$ Survey: rotating compact star forming galaxies and the decomposition of integrated line widths

Astrophysics of Galaxies 2018-03-28 v2

Abstract

Using integral field spectroscopy we investigate the kinematic properties of 35 massive centrally-dense and compact star-forming galaxies (logM=11.1{\log{\overline{M}_*}}=11.1, log(Σ1kpc)>9.5\log{(\Sigma_\mathrm{1kpc})}>9.5, log(M/re1.5)>10.3\log{(M_\ast/r_e^{1.5})}>10.3) at z0.73.7z\sim0.7-3.7 within the KMOS3D^\mathrm{3D}survey. We spatially resolve 23 compact star-forming galaxies (SFGs) and find that the majority are dominated by rotational motions with velocities ranging from {9550095-500 km s1^{-1}}. The range of rotation velocities is reflected in a similar range of integrated Hα\alpha linewidths, 7540075-400 km s1^{-1}, consistent with the kinematic properties of mass-matched extended galaxies from the full KMOS3D^\mathrm{3D} sample. The fraction of compact SFGs that are classified as `rotation-dominated' or `disk-like' also mirrors the fractions of the full KMOS3D^\mathrm{3D} sample. We show that integrated line-of-sight gas velocity dispersions from KMOS3D^\mathrm{3D} are best approximated by a linear combination of their rotation and turbulent velocities with a lesser but still significant contribution from galactic scale winds. The Hα\alpha exponential disk sizes of compact SFGs are on average 2.5±0.22.5\pm0.2 kpc, 12×1-2\times the continuum sizes, in agreement with previous work. The compact SFGs have a 1.4×1.4\times higher AGN incidence than the full KMOS3D^\mathrm{3D} sample at fixed stellar mass with average AGN fraction of 76\%. Given their high and centrally concentrated stellar masses as well as stellar to dynamical mass ratios close to unity, the compact SFGs are likely to have low molecular gas fractions and to quench on a short time scale unless replenished with inflowing gas. The rotation in these compact systems suggests that their direct descendants are rotating passive galaxies.

Keywords

Cite

@article{arxiv.1711.02111,
  title  = {The KMOS$^\mathrm{3D}$ Survey: rotating compact star forming galaxies and the decomposition of integrated line widths},
  author = {E. Wisnioski and J. T. Mendel and N. M. Förster Schreiber and R. Genzel and D. Wilman and S. Wuyts and S. Belli and A. Beifiori and R. Bender and G. Brammer and J. Chan and R. I. Davies and R. L. Davies and M. Fabricius and M. Fossati and A. Galametz and P. Lang and D. Lutz and E. J. Nelson and I. Momcheva and D. Rosario and R. Saglia and L. J. Tacconi and K. Tadaki and H. Übler and P. G. van Dokkum},
  journal= {arXiv preprint arXiv:1711.02111},
  year   = {2018}
}

Comments

16 Pages, 9 figures, Accepted, 2018, ApJ, 855, 2