A new tool to determine masses and mass profiles using gravitational flexion
arXiv:0910.0842 · doi:10.1111/j.1365-2966.2010.16573.x
Abstract
In a recent publication, an aperture mass statistic for gravitational flexion was derived and shown to be effective, at least with simulated data, in detecting massive structures and substructures within clusters of galaxies. Further, it was suggested that the radius at which the flexion aperture mass signal falls to zero might allow for estimation of the mass or density profile of the structures detected. In this paper, we more fully explore this possibility, considering the behaviour both of the peak signal and the zero-signal contours for two mass models--the singular isothermal sphere and Navarro-Frenk-White profiles--under varying aperture size, filter shape and mass concentration parameter. We demonstrate the effectiveness of the flexion aperture mass statistic in discriminating between mass profiles and concentration parameters, and in providing an accurate estimate of the mass of the lens, to within a factor of 1.5 or better. In addition, we compare the aperture mass method to a direct nonparametric reconstruction of the convergence from flexion measurements. We demonstrate that the aperture mass technique is much better able to constrain the shape of the central density profile, obtains much finer angular resolution in reconstructions, and does not suffer from ambiguity in the normalisation of the signal, in contrast to the direct method.
14 pages, 11 figures, 4 tables, MNRAS accepted
References in corpus (10)
- CIRS: Cluster Infall Regions in the Sloan Digital Sky Survey I. Infall Patterns and Mass Profiles
- The Distribution of Dark Matter Over 3 Decades in Radius in the Lensing Cluster Abell 611
- A New Look at Massive Clusters: weak lensing constraints on the triaxial dark matter halos of Abell 1689, Abell 1835, & Abell 2204
- Models of the Cosmic Horseshoe Gravitational Lens
- Interloper treatment in dynamical modelling of galaxy clusters
- Two-dimensional kinematics of SLACS lenses: I. Phase-space analysis of the early-type galaxy SDSS J2321-097 at z=0.1
- A Method for Weak Lensing Flexion Analysis by the HOLICs Moment Approach
- Discrepant Mass Estimates in the Cluster of Galaxies Abell 1689
- Detecting Mass Substructure in Galaxy Clusters: An Aperture Mass Statistic for Gravitational Flexion
- Shape, shear & flexion: An analytic flexion formalism for realistic mass profiles
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- Cluster Lenses
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- High Resolution Weak Lensing Mass-Mapping Combining Shear and Flexion
- Probing Galaxy Dark Matter Haloes in COSMOS with Weak Lensing Flexion
- An environmental dependence of the physical and structural properties in the Hydra Cluster galaxies
- Low X-ray Luminosity Galaxy Clusters. III: Weak Lensing Mass Determination at 0.18 z 0.70
- Shape, shear and flexion II - Quantifying the flexion formalism for extended sources with the ray-bundle method
- I. Analysis of candidates for interacting galaxy clusters
- Compact Groups analysis using weak gravitational lensing II: CFHT Stripe 82 data
- Weak lensing measurement of the mass-richness relation using the SDSS database
- The general theory of secondary weak gravitational lensing
- Compact Groups analysis using weak gravitational lensing