A Technical Memorandum On Core Radii In Lens Statistics
Abstract
Quantitative estimates of lensing probabilities must be self-consistent. In particular, for asymptotically isothermal models: (1) using the correction for the velocity dispersion overestimates the expected number of lenses by 150\% and their average separations by 50\%, thereby introducing large cosmological errors; (2) when a core radius is added to the SIS model, the velocity dispersion must be increased; and (3) cross sections and magnification bias cannot be separated when computing the lensing probability. When we self-consistently calculate the effects of finite core radii in flat cosmological models, we find that the cosmological limits are independent of the core radius.
Cite
@article{arxiv.astro-ph/9510074,
title = {A Technical Memorandum On Core Radii In Lens Statistics},
author = {C. S. Kochanek},
journal= {arXiv preprint arXiv:astro-ph/9510074},
year = {2007}
}
Comments
6 pages, 3 figures, uuencoded compressed postscript Paper to appear in ``Astrophysical Applications of Gravitational Lensing'' IAU Symposium 173, eds. C.S. Kochanek \& J.N. Hewitt (Kluwer: Dordrecht) 13