Measuring Gravitational Lensing Flexions in Abell 1689 Using an Analytic Image Model
arXiv:1103.0551 · doi:10.1088/0004-637X/736/1/43
Abstract
Measuring dark matter substructure within galaxy cluster haloes is a fundamental probe of the Lambda-CDM model of structure formation. Gravitational lensing is a technique for measuring the total mass distribution which is independent of the nature of the gravitating matter, making it a vital tool for studying these dark-matter dominated objects. We present a new method for measuring weak gravitational lensing flexions, the gradients of the lensing shear field, to measure mass distributions on small angular scales. While previously published methods for measuring flexions focus on measuring derived properties of the lensed images, such as shapelet coefficients or surface brightness moments, our method instead fits a mass-sheet-transformation-invariant Analytic Image Model (AIM) to the each galaxy image. This simple parametric model traces the distortion of lensed image isophotes and constrains the flexion fields. We test the AIM method using simulated data images with realistic noise and a variety of unlensed image properties, and show that it successfully reproduces the input flexion fields. We also apply the AIM method for flexion measurement to Hubble Space Telescope observations of Abell 1689, and detect mass structure in the cluster using flexions measured with the AIM method.
44 pages, 4 figures, 3 tables. Accepted to ApJ. V2 (published version) has minor changes from V1; ApJ 736 (2011)
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Cited by in corpus (16)
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- High Resolution Weak Lensing Mass-Mapping Combining Shear and Flexion
- A Free-Form Lensing Grid Solution for A1689 with New Mutiple Images
- Analytical shear and flexion of Einasto dark matter haloes
- Reducing the Impact of Weak-lensing Errors on Gravitational-wave Standard Sirens
- Internal Cluster Structure
- Reconstruction of small-scale galaxy cluster substructure with lensing flexion
- Constraining primordial non-Gaussianity with cosmological weak lensing: shear and flexion
- Measurement of halo properties with weak lensing shear and flexion
- Estimate of halo ellipticity as a function of radius with flexions
- A new method to break the mass sheet degeneracy using aperture moments
- Improving lensing cluster mass estimate with flexion
- Estimation of halo ellipticity using spin-3 flexion
- Shape, Color and Distance in Weak Gravitational Flexion
- A New Estimate of Galaxy Mass-to-Light Ratios from Flexion Lensing Statistics
- A short review on joint weak and strong cluster lens-mass reconstruction