Mapping the 3-D Dark Matter potential with weak shear
arXiv:astro-ph/0212266 · doi:10.1046/j.1365-8711.2003.06922.x
Abstract
We investigate the practical implementation of Taylor's (2002) 3-dimensional gravitational potential reconstruction method using weak gravitational lensing, together with the requisite reconstruction of the lensing potential. This methodology calculates the 3-D gravitational potential given a knowledge of shear estimates and redshifts for a set of galaxies. We analytically estimate the noise expected in the reconstructed gravitational field, taking into account the uncertainties associated with a finite survey, photometric redshift uncertainty, redshift-space distortions, and multiple scattering events. In order to implement this approach for future data analysis, we simulate the lensing distortion fields due to various mass distributions. We create catalogues of galaxies sampling this distortion in three dimensions, with realistic spatial distribution and intrinsic ellipticity for both ground-based and space-based surveys. Using the resulting catalogues of galaxy position and shear, we demonstrate that it is possible to reconstruct the lensing and gravitational potentials with our method. For example, we demonstrate that a typical ground-based shear survey with redshift limit z=1 and photometric redshifts with error Delta z=0.05 is directly able to measure the 3-D gravitational potential for mass concentrations >10^14 M_\odot between 0.1<z<0.5, and can statistically measure the potential at much lower mass limits. The intrinsic ellipticity of objects is found to be a serious source of noise for the gravitational potential, which can be overcome by Wiener filtering or examining the potential statistically over many fields. We examine the use of the 3-D lensing potential to measure mass and position of clusters in 3-D, and to detect clusters behind clusters.
21 pages, including 24 figures, submitted to MNRAS
References in corpus (6)
- The shear power spectrum from the COMBO-17 survey
- E/B decomposition of finite pixelized CMB maps
- Weak gravitational lensing: reducing the contamination by intrinsic alignments
- Dark Energy and Matter Evolution from Lensing Tomography
- Separating cosmic shear from intrinsic galaxy alignments: correlation function tomography
- Suppressing the contribution of intrinsic galaxy alignments to the shear two-point correlation function
Cited by in corpus (39)
- Cosmology and Fundamental Physics with the Euclid Satellite
- Cosmology and fundamental physics with the Euclid satellite
- Cosmology with cosmic shear observations: a review
- Dark matter maps reveal cosmic scaffolding
- The dark matter of gravitational lensing
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys -I. Methodology and a Fast Fitting Algorithm
- Galaxy alignments: Observations and impact on cosmology
- Weak lensing analysis in three dimensions
- Weak lensing with COMBO-17: estimation and removal of intrinsic alignments
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys -II. Application to Simulations
- Weak Gravitational Flexion
- Shear Selected Cluster Cosmology I: Tomography and Optimal Filtering
- Two- and three-dimensional wide-field weak lensing mass maps from the Hyper Suprime-Cam Subaru Strategic Program S16A data
- Mapping the 3-D dark matter with weak lensing in COMBO-17
- Weak gravitational shear and flexion with polar shapelets
- Unfolding the matter distribution using 3-D weak gravitational lensing
- Weak Lensing from Space II: Dark Matter Mapping
- Galaxy-galaxy weak-lensing measurement from SDSS: II. host halo properties of galaxy groups
- Evolution of the Dark Matter Distribution with 3-D Weak Lensing
- SKA Weak Lensing III: Added Value of Multi-Wavelength Synergies for the Mitigation of Systematics
- 3D Reconstruction of the Density Field: An SVD Approach to Weak Lensing Tomography
- Weak Lensing from Space I: Instrumentation and Survey Strategy
- A Compressed Sensing Approach to 3D Weak Lensing
- Halo Properties and Mass Functions of Groups/Clusters from the DESI Legacy Imaging Surveys DR9
- Galaxy-Galaxy Weak Lensing Measurements from SDSS: I. Image Processing and Lensing signals
- The COSMOS Density Field: A Reconstruction Using Both Weak Lensing and Galaxy Distributions
- Spatial matter density mapping of the STAGES Abell A901/2 supercluster field with 3D lensing
- Mapping dark matter on the celestial sphere with weak gravitational lensing
- Improving three-dimensional mass mapping with weak gravitational lensing using galaxy clustering
- An accurate centroid algorithm for PSF reconstruction
- Bayesian Photometric Redshifts for Weak Lensing Applications
- Probing supervoids with weak lensing
- Light on Dark Matter with Weak Gravitational Lensing
- Weak gravitational lensing
- On the effect of projections on convergence peak counts and Minkowski functionals
- Galaxy and halo angular clustering in LCDM and Modified Gravity cosmologies
- Spectro-photometric and Weak Lensing Survey of a Supercluster and Typical Field Region -- I. Spectroscopic Redshift Measurements
- Three-Dimensional Reconstruction of Weak Lensing Mass Maps with a Sparsity Prior. I. Cluster Detection
- Cosmology with Gravitational Lensing