English

Radial density profiles of time-delay lensing galaxies

Astrophysics 2009-11-13 v2

Abstract

We present non-parametric radial mass profiles for ten QSO strong lensing galaxies. Five of the galaxies have profiles close to ρ(r)r2\rho(r)\propto r^{-2}, while the rest are closer to r^{-1}, consistent with an NFW profile. The former are all relatively isolated early-types and dominated by their stellar light. The latter --though the modeling code did not know this-- are either in clusters, or have very high mass-to-light, suggesting dark-matter dominant lenses (one is a actually pair of merging galaxies). The same models give H01=15.21.7+2.5\GyrH_0^{-1} = 15.2_{-1.7}^{+2.5}\Gyr (H0=649+8\legacyH_0 = 64_{-9}^{+8} \legacy), consistent with a previous determination. When tested on simulated lenses taken from a cosmological hydrodynamical simulation, our modeling pipeline recovers both H_0 and ρ(r)\rho(r) within estimated uncertainties. Our result is contrary to some recent claims that lensing time delays imply either a low H_0 or galaxy profiles much steeper than r^{-2}. We diagnose these claims as resulting from an invalid modeling approximation: that small deviations from a power-law profile have a small effect on lensing time-delays. In fact, as we show using using both perturbation theory and numerical computation from a galaxy-formation simulation, a first-order perturbation of an isothermal lens can produce a zeroth-order change in the time delays.

Keywords

Cite

@article{arxiv.0704.3267,
  title  = {Radial density profiles of time-delay lensing galaxies},
  author = {J. I. Read and P. Saha and A. V. Maccio},
  journal= {arXiv preprint arXiv:0704.3267},
  year   = {2009}
}
R2 v1 2026-06-21T08:22:00.021Z