Estimating cosmological parameters from future gravitational lens surveys
arXiv:0904.1437 · doi:10.1111/j.1365-2966.2009.14873.x
Abstract
Upcoming ground and space based observatories such as the DES, the LSST, the JDEM concepts and the SKA, promise to dramatically increase the size of strong gravitational lens samples. A significant fraction of the systems are expected to be time delay lenses. Many of the existing lensing degeneracies become less of an issue with large samples since the distributions of a number of parameters are predictable, and can be incorporated into an analysis, thus helping to lessen the degeneracy. Assuming a mean galaxy density profile that does not evolve with redshift, a Lambda-CDM cosmology, and Gaussian distributions for bulk parameters describing the lens and source populations, we generate synthetic lens catalogues and examine the relationship between constraints on the Omega_m - Omega_Lambda plane and H_0 with increasing lens sample size. We find that, with sample sizes of ~400 time delay lenses, useful constraints can be obtained for Omega_m and Omega_Lambda with approximately similar levels of precision as from the best of other methods. In addition, sample sizes of ~100 time delay systems yield estimates of H_0 with errors of only a couple of percent, exceeding the level of precision from current best estimates such as the HST Key Project. We note that insufficient prior knowledge of the lens samples employed in the analysis, via under or overestimates in the mean values of the sample distributions, results in broadening of constraints. This highlights the need for sound prior knowledge of the sample before useful cosmological constraints can be obtained from large time delay samples (abridged).
10 pages, 3 figures, 1 table. Accepted for publication in MNRAS
References in corpus (15)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- The Sloan Digital Sky Survey Quasar Catalog IV. Fifth Data Release
- The Sloan Lens ACS Survey. V. The Full ACS Strong-Lens Sample
- The Sloan Lens ACS Survey. VI: Discovery and analysis of a double Einstein ring
- Gravitational Lens Time Delays: A Statistical Assessment of Lens Model Dependences and Implications for the Global Hubble Constant
- Cosmological parameters from strong gravitational lensing and stellar dynamics in elliptical galaxies
- The Sloan Digital Sky Survey Quasar Lens Search. III. Constraints on Dark Energy from the Third Data Release Quasar Lens Catalog
- The Hubble time inferred from 10 time-delay lenses
- Gravitational lensing model degeneracies: Is steepness all-important?
- The Gravitational Lens -- Galaxy Group Connection. II. Groups Associated with B2319+051 and B1600+434
- Lens Galaxy Properties of SBS1520+530: Insights from Keck Spectroscopy and AO Imaging
- Radial density profiles of time-delay lensing galaxies
- The Environments of SLACS Gravitational Lenses
- Steepened inner density profiles of group galaxies via interactions: An N-body analysis
- The Hubble constant from galaxy lenses: impacts of triaxiality and model degeneracies
Cited by in corpus (19)
- Seven-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Dissecting the Gravitational Lens B1608+656. II. Precision Measurements of the Hubble Constant, Spatial Curvature, and the Dark Energy Equation of State
- Gravitationally lensed quasars and supernovae in future wide-field optical imaging surveys
- Strong Lens Time Delay Challenge: II. Results of TDC1
- Lensing Time Delays and Cosmological Complementarity
- Illuminating a Dark Lens : A Type Ia Supernova Magnified by the Frontier Fields Galaxy Cluster Abell 2744
- Improving the precision of time-delay cosmography with observations of galaxies along the line of sight
- Gravitational lenses as cosmic rulers: density of dark matter and dark energy from time delays and velocity dispersions
- Cosmological Constraints from Gravitational Lens Time Delays
- The Observed Growth of Massive Galaxy Clusters IV: Robust Constraints on Neutrino Properties
- Strongly Lensed Gravitational Waves and Electromagnetic Signals as Powerful Cosmic Rulers
- Time Delays in the Gravitationally Lensed Quasar H1413+117 (Cloverleaf)
- GERLUMPH Data Release 2: 2.5 billion simulated microlensing light curves
- Cosmological test using strong gravitational lensing systems
- Bayesian approach to gravitational lens model selection: constraining H_0 with a selected sample of strong lenses
- Measuring gravitational lens time delays using low-resolution radio monitoring observations
- Tailoring Strong Lensing Cosmographic Observations
- Host group degeneracy in gravitational lensing time delay determination of
- The robustness of angular diameter distances to the lens in the B1608+656 and RXJ1131-1231 systems