English

Mass density slope of elliptical galaxies from strong lensing and resolved stellar kinematics

Astrophysics of Galaxies 2018-01-24 v2

Abstract

We discuss constraints on the mass density distribution (parameterized as ρrγ\rho\propto r^{-\gamma}) in early-type galaxies provided by strong lensing and stellar kinematics data. The constraints come from mass measurements at two `pinch' radii. One `pinch' radius r1=2.2REinstr_1=2.2 R_{Einst} is defined such that the Einstein (i.e. aperture) mass can be converted to the spherical mass almost independently of the mass-model. Another `pinch' radius r2=Roptr_2=R_{opt} is chosen so that the dynamical mass, derived from the line-of-sight velocity dispersion, is least sensitive to the anisotropy of stellar orbits. We verified the performance of this approach on a sample of simulated elliptical galaxies and on a sample of 15 SLACS lens galaxies at 0.01z0.350.01 \leq z \leq 0.35, which have already been analysed in Barnabe et al. (2011) by the self-consistent joint lensing and kinematic code. For massive simulated galaxies the density slope γ\gamma is recovered with an accuracy of 13%\sim 13\%, unless r1r_1 and r2r_2 happen to be close to each other. For SLACS galaxies, we found good overall agreement with the results of Barnabe et al. (2011) with a sample-averaged slope γ=2.1±0.05\gamma=2.1\pm0.05. While the two-pinch-radii approach has larger statistical uncertainties, it is much simpler and uses only few arithmetic operations with directly observable quantities.

Keywords

Cite

@article{arxiv.1711.01123,
  title  = {Mass density slope of elliptical galaxies from strong lensing and resolved stellar kinematics},
  author = {Natalia Lyskova and Eugene Churazov and Thorsten Naab},
  journal= {arXiv preprint arXiv:1711.01123},
  year   = {2018}
}

Comments

accepted for publication in MNRAS