Non-parametric strong lens inversion of SDSS J1004+4112
arXiv:0904.2382 · doi:10.1111/j.1365-2966.2009.14912.x
Abstract
In this article we study the well-known strong lensing system SDSS J1004+4112. Not only does it host a large-separation lensed quasar with measured time-delay information, but several other lensed galaxies have been identified as well. A previously developed strong lens inversion procedure that is designed to handle a wide variety of constraints, is applied to this lensing system and compared to results reported in other works. Without the inclusion of a tentative central image of one of the galaxies as a constraint, we find that the model recovered by the other constraints indeed predicts an image at that location. An inversion which includes the central image provides tighter constraints on the shape of the central part of the mass map. The resulting model also predicts a central image of a second galaxy where indeed an object is visible in the available ACS images. We find masses of 2.5x10^13 M_O and 6.1x10^13 M_O within a radius of 60 kpc and 110 kpc respectively, confirming the results from other authors. The resulting mass map is compatible with an elliptical generalization of a projected NFW profile, with r_s = 58_{-13}^{+21} arcsec and c_vir = 3.91 +/- 0.74. The orientation of the elliptical NFW profile follows closely the orientation of the central cluster galaxy and the overall distribution of cluster members.
11 pages, accepted for publication in MNRAS
References in corpus (11)
- Multi-scale cluster lens mass mapping I. Strong Lensing modelling
- A genetic algorithm for the non-parametric inversion of strong lensing systems
- The Rewards of Patience: An 822 Day Time Delay in the Gravitational Lens SDSS J1004+4112
- SDSS J1029+2623: A Gravitationally Lensed Quasar with an Image Separation of 22.5 Arcseconds
- Non-parametric inversion of gravitational lensing systems with few images using a multi-objective genetic algorithm
- Chandra Observations of SDSS J1004+4112: Constraints on the Lensing Cluster and Anomalous X-Ray Flux Ratios of the Quadruply Imaged Quasar
- Non-parametric strong lens inversion of Cl~0024+1654: illustrating the monopole degeneracy
- A generalisation of the mass-sheet degeneracy producing ring-like artefacts in the lens mass distribution
- Meso-structure in three strong-lensing systems
- Strange magnification pattern in the large separation lens SDSS J1004+4112 from optical to X-rays
- Spectroscopic Confirmation of the Fifth Image of SDSS J1004+4112 and Implications for the M_BH-sigma_* Relation at z=0.68
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- The Longest Delay: a 14.5 Yr Campaign to Determine the Third Time Delay in the Lensing Cluster SDSS~J1004+4112
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- Lensing time delays as a substructure constraint: a case study with the cluster SDSS~J1004+4112
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