Time Delays for the Giant Quadruple Lensed Quasar SDSS J1004+4112: Prospects for Determining the Density Profile of the Lensing Cluster
arXiv:astro-ph/0601149 · doi:10.1093/pasj/58.2.271
Abstract
We investigate the dependence of the time delays for the large-separation gravitationally lensed quasar SDSS J1004+4112 on the inner mass profile of the lensing cluster. Adopting the mass model whose innermost density profile is parameterized as ρ\propto r^{-α}, we derive a series of mass models which can fit observational data and then compute the probability distribution functions of time delays. We find that larger αhas longer time delays, longer tails at the higher end of the probability distribution, and larger model uncertainties. The ratios of time delays slightly depend on the slope α. Among others, time delays between images C and A (or B) have little dependence on the inner slope, particularly when the time delays are short. The dependence of time delays on αis well fitted by a linear form, which reflects well-known degeneracy between the mass profile and time delays. We perform a Monte-Carlo simulation to illustrate how well the inner slope can be constrained from measurements of time delays. We find that measurements of more than one time delays result in reasonably tight constraints on the inner slope (σ_α \lesssim 0.25), while only one time delay cannot determine the inner slope very well. Our result indicates that time delays indeed serve as a powerful tool to determine the mass profile, despite the complexity of the lensing cluster.
21 pages, 8 figures, accepted for publication in PASJ
Cited by in corpus (13)
- The Mass Distribution of SDSS J1004+4112 Revisited
- Gravitational Lens Time Delays: A Statistical Assessment of Lens Model Dependences and Implications for the Global Hubble Constant
- The Rewards of Patience: An 822 Day Time Delay in the Gravitational Lens SDSS J1004+4112
- SDSS J1029+2623: A Gravitationally Lensed Quasar with an Image Separation of 22.5 Arcseconds
- Cosmological constant and time delay
- The Longest Delay: a 14.5 Yr Campaign to Determine the Third Time Delay in the Lensing Cluster SDSS~J1004+4112
- The faintest radio source yet: EVLA observations of the gravitational lens SDSS J1004+4112
- Lensing time delays as a substructure constraint: a case study with the cluster SDSS~J1004+4112
- A Mass Model for the Lensing Cluster SDSS J1004+4112: Constraints From the Third Time Delay
- Time delay in the Einstein-Straus solution
- Deflection of light and time delay in closed Einstein-Straus solution
- Effect of the spatial curvature on light bending and time delay in curved Einstein-Straus--de Sitter spacetime
- Deflection of light and time delay in hyperbolic Einstein-Straus--de Sitter solution