The Gini Coefficient as a Tool for Image Family Idenitification in Strong Lensing Systems with Multiple Images
arXiv:1511.03594 · doi:10.3847/2041-8205/816/2/L23
Abstract
The sample of cosmological strong lensing systems has been steadily growing in recent years and with the advent of the next generation of space-based survey telescopes, the sample will reach into the thousands. The accuracy of strong lens models relies on robust identification of multiple image families of lensed galaxies. For the most massive lenses, often more than one background galaxy is magnified and multiply-imaged, and even in the cases of only a single lensed source, identification of counter images is not always robust. Recently, we have shown that the Gini coefficient in space-telescope-quality imaging is a measurement of galaxy morphology that is relatively well-preserved by strong gravitational lensing. Here, we investigate its usefulness as a diagnostic for the purposes of image family identification and show that it can remove some of the degeneracies encountered when using color as the sole diagnostic, and can do so without the need for additional observations since whenever a color is available, two Gini coefficients are as well.
2 figures
References in corpus (7)
- Mass and magnification maps for the Hubble Space Telescope Frontier Fields clusters: implications for high redshift studies
- Lens models and magnification maps of the six Hubble Frontier Fields clusters
- Cosmological Constraints from Strong Gravitational Lensing in Galaxy Clusters
- CLASH-VLT: Insights on the mass substructures in the Frontier Fields Cluster MACS J0416.1-2403 through accurate strong lens modeling
- Hubble Frontier Fields First Complete Cluster Data: Faint Galaxies at for UV Luminosity Functions and Cosmic Reionization
- Hubble Frontier Fields : A High Precision Strong Lensing Analysis of Galaxy Cluster MACSJ0416.1-2403 using ~200 Multiple Images
- Gravitational lensing in WDM cosmologies: The cross section for giant arcs
Cited by in corpus (17)
- Lyman-alpha and CIII] Emission in z=7-9 Galaxies: Accelerated Reionization Around Luminous Star Forming Systems?
- SDSS-IV MaNGA: The Impact of Diffuse Ionized Gas on Emission-line Ratios, Interpretation of Diagnostic Diagrams, and Gas Metallicity Measurements
- Ultraviolet spectra of extreme nearby star-forming regions --- approaching a local reference sample for JWST
- Synthetic nebular emission from massive galaxies I: origin of the cosmic evolution of optical emission-line ratios
- The COSMOS [OII] Survey: Evolution of Electron Density with Star Formation Rate
- The First Billion Years project: constraining the dust attenuation law of star-forming galaxies at z 5
- Evolution of N/O Abundance Ratios and Ionization Parameters from z~0 to 2 Investigated by the Direct Temperature Method
- The Nature of H[O{\sc iii}] and [O{\sc ii}] emitters to with HiZELS: stellar mass functions and the evolution of EWs
- Radiative transfer meets Bayesian statistics: where does a galaxy's [CII] emission come from?
- Inferring gas-phase metallicity gradients of galaxies at the seeing limit: A forward modelling approach
- PICS: Simulations of Strong Gravitational Lensing in Galaxy Clusters
- Local analogues of high-redshift star-forming galaxies: integral field spectroscopy of green peas
- Effective temperature of ionizing stars of extragalactic HII regions
- The importance of secondary halos for strong lensing in massive galaxy clusters across redshift
- The Gini Coefficient as a Morphological Measurement of Strongly Lensed Galaxies in the Image Plane
- What can distant galaxies teach us about massive stars?
- Effect of AGN on the morphological properties of their host galaxies in the local Universe