Unveiling dark halos in lensing galaxies
arXiv:0710.3159 · doi:10.1111/j.1365-2966.2007.12606.x
Abstract
We present a spatially resolved comparison of the stellar-mass and total-mass surface distributions of nine early-type galaxies. The galaxies are a subset of the Sloan Lens ACS survey (or SLACS; Bolton et al. 2006). The total-mass distributions are obtained by exploring pixelated mass models that reproduce the lensed images. The stellar-mass distributions are derived from population synthesis models fit to the photometry of the lensing galaxies. Uncertainties - mainly model degeneracies - are also computed. Stars can account for all the mass in the inner regions. A Salpeter IMF actually gives too much stellar mass in the inner regions and hence appears ruled out. Dark matter becomes significant by the half-light radius and becomes increasingly dominant at larger radii. The stellar and dark components are closely aligned, but the actual ellipticities are not correlated. Finally, we attempt to intuitively summarize the results by rendering the density, stellar-vs-dark ratio, and uncertainties as false-colour maps.
8 pages, 7 figures. Accepted for publication in MNRAS
Cited by in corpus (5)
- Can TeVeS avoid Dark Matter on galactic scales?
- Incompatibility of Rotation Curves with Gravitational Lensing for TeVeS
- A sharp look at the gravitationally lensed quasar SDSS J0806+2006 with Laser Guide Star Adaptive Optics
- Lensed Image Angles: New Statistical Evidence for Substructure
- Unlensing HST Observations of the Einstein Ring 1RXS J1131-1231: A Bayesian Analysis