A generalisation of the mass-sheet degeneracy producing ring-like artefacts in the lens mass distribution
arXiv:0801.4255 · doi:10.1111/j.1365-2966.2008.13026.x
Abstract
The inversion of a gravitational lens system is, as is well known, plagued by the so-called mass-sheet degeneracy: one can always rescale the density distribution of the lens and add a constant-density mass-sheet such that the, also properly rescaled, source plane is projected onto the same observed images. For strong lensing systems, it is often claimed that this degeneracy is broken as soon as two or more sources at different redshifts are available. This is definitely true in the strict sense that it is then impossible to add a constant-density mass-sheet to the rescaled density of the lens without affecting the resulting images. However, often one can easily construct a more general mass distribution -- instead of a constant-density sheet of mass -- which gives rise to the same effect: a uniform scaling of the sources involved without affecting the observed images. We show that this can be achieved by adding one or more circularly symmetric mass distributions, each with its own center of symmetry, to the rescaled mass distribution of the original lens. As it uses circularly symmetric distributions, this procedure can lead to the introduction of ring shaped features in the mass distribution of the lens. In this paper, we show explicitly how degenerate inversions for a given strong lensing system can be constructed. It then becomes clear that many constraints are needed to effectively break this degeneracy.
6 pages, accepted for publication by MNRAS
References in corpus (2)
Cited by in corpus (12)
- The Local Dark Matter Density
- Multi-scale cluster lens mass mapping I. Strong Lensing modelling
- The behaviour of dark matter associated with 4 bright cluster galaxies in the 10kpc core of Abell 3827
- Non-parametric strong lens inversion of Cl~0024+1654: illustrating the monopole degeneracy
- Can one determine cosmological parameters from multi-plane strong lens systems?
- The cluster lens ACO 1703: redshift contrast and the inner profile
- Free-form Grale lens inversion of galaxy clusters with up to 1000 multiple images
- Lensing time delays as a substructure constraint: a case study with the cluster SDSS~J1004+4112
- Galaxy Distribution as a Probe of the Ringlike Dark Matter Structure in the Galaxy Cluster Cl0024+17
- Line-of-sight effects on double source plane lenses
- Which gravitational lensing degeneracies are broken in wave-optics?
- A short review on joint weak and strong cluster lens-mass reconstruction