English

Systematic trends in total-mass profiles from dynamical models of early-type galaxies

Astrophysics of Galaxies 2017-04-03 v3

Abstract

We study trends in the slope of the total mass profiles and dark matter fractions within the central half-light radius of 258 early-type galaxies, using data from the volume-limited ATLAS3D^{\mathrm{3D}} survey. We use three distinct sets of dynamical models, which vary in their assumptions and also allow for spatial variations in the stellar mass-to-light ratio, to test the robustness of our results. We confirm that the slopes of the total mass profiles are approximately isothermal, and investigate how the total-mass slope depends on various galactic properties. The most statistically-significant correlations we find are a function of either surface density, Σe\Sigma_e, or velocity dispersion, σe\sigma_e. However there is evidence for a break in the latter relation, with a nearly universal logarithmic slope above log10[σe/(\sikm s1)]2.1\log_{10}[\sigma_e/(\si{km~s^{-1}})]\sim 2.1 and a steeper trend below this value. For the 142 galaxies above that critical σe\sigma_e value, the total mass-density logarithmic slopes have a mean value γ=2.192±0.016\left\langle\gamma^\prime\right\rangle = -2.192 \pm 0.016 (1σ1\sigma error) with an observed rms scatter of only σγ=0.167±0.016\sigma_{\gamma^\prime}=0.167 \pm 0.016. Considering the observational errors, we estimate an intrinsic scatter of σγintr0.15\sigma_{\gamma^\prime}^\mathrm{intr} \approx 0.15. These values are broadly consistent with those found by strong lensing studies at similar radii and agree, within the tight errors, with values recently found at much larger radii via stellar dynamics or HI rotation curves (using significantly smaller samples than this work).

Keywords

Cite

@article{arxiv.1612.05805,
  title  = {Systematic trends in total-mass profiles from dynamical models of early-type galaxies},
  author = {A. Poci and M. Cappellari and R. M. McDermid},
  journal= {arXiv preprint arXiv:1612.05805},
  year   = {2017}
}

Comments

17 pages, 11 figures, 3 tables. Published in MNRAS