Improving three-dimensional mass mapping with weak gravitational lensing using galaxy clustering
arXiv:1203.6205 · doi:10.1051/0004-6361/201219257
Abstract
The weak gravitational lensing distortion of distant galaxy images (defined as sources) probes the projected large-scale matter distribution in the Universe. To improve quality in the 3D mass mapping using 3D-lensing, we combine the lensing information with the spatial clustering of a population of galaxies that trace the matter density with a known galaxy bias (defined as tracers). For our minimum variance estimator, merely all the second-order bias of the tracers has to be known, which can in principle be self-consistently constrained in the data by lensing techniques. This synergy introduces a new noise component because of the stochasticity in the matter-tracer density relation. We give a description of the stochasticity noise in the Gaussian regime, and we investigate the estimator characteristics analytically. We apply the estimator to a mock survey based on the Millennium Simulation. The estimator linearly mixes the individual lensing mass and tracer number density maps into a combined smoothed mass map. The weighting in the mix depends on the S/N of the individual maps and the correlation, , between the matter and galaxy density. The weight of the tracers can be reduced by hand. For moderate mixing, the S/N in the mass map improves by a factor for ; the systematic offset between a true and apparent mass peak distance (-shift bias) in a lensing-only map is eliminated, even for weak correlations of . If the second-order bias of tracer galaxies can be determined, the synergy technique potentially provides an option to improve redshift accuracy and completeness of the lensing 3D mass map. However,the estimator's performance on sub-degree, non-Gaussian scales depends on all details in the galaxy bias mechanism and, hence, its accuracy on the choice of the tracer population.[abridged]
15 pages, 8 figures, language corrections, A&A in press
References in corpus (6)
- Cosmology with Weak Lensing Surveys
- COSMOS: Stochastic bias from measurements of weak lensing and galaxy clustering
- GaBoDS: The Garching-Bonn Deep Survey: VII. Probing galaxy bias using weak gravitational lensing
- A Compressed Sensing Approach to 3D Weak Lensing
- Spatial matter density mapping of the STAGES Abell A901/2 supercluster field with 3D lensing
- Retrieving the three-dimensional matter power spectrum and galaxy biasing parameters from lensing tomography
Cited by in corpus (9)
- Cosmology with cosmic shear observations: a review
- GLIMPSE: Accurate 3D weak lensing reconstructions using sparsity
- Scale dependence of galaxy biasing investigated by weak gravitational lensing: An assessment using semi-analytic galaxies and simulated lensing data
- Efficient Optimal Reconstruction of Linear Fields and Band-powers from Cosmological Data
- Bayesian weak lensing tomography: Reconstructing the 3D large-scale distribution of matter with a lognormal prior
- Mapping dark matter on the celestial sphere with weak gravitational lensing
- Preconditioner-free Wiener filtering with a dense noise matrix
- Weak lensing reconstructions in 2D & 3D: implications for cluster studies
- On the effect of projections on convergence peak counts and Minkowski functionals