Hubble Frontier Fields: systematic errors in strong lensing models of galaxy clusters - Implications for cosmography
arXiv:1704.05380 · doi:10.1093/mnras/stx1330
Abstract
Strong gravitational lensing by galaxy clusters is a fundamental tool to study dark matter and constrain the geometry of the Universe. Recently, the Hubble Space Telescope Frontier Fields programme has allowed a significant improvement of mass and magnification measurements but lensing models still have a residual root mean square between 0.2 arcsec and few arcsec- onds, not yet completely understood. Systematic errors have to be better understood and treated in order to use strong lensing clusters as reliable cosmological probes. We have analysed two simulated Hubble-Frontier-Fields-like clusters from the Hubble Frontier Fields Comparison Challenge, Ares and Hera. We use several estimators (relative bias on magnification, den- sity profiles, ellipticity and orientation) to quantify the goodness of our reconstructions by comparing our multiple models, optimized with the parametric software LENSTOOL , with the input models. We have quantified the impact of systematic errors arising, first, from the choice of different density profiles and configurations and, secondly, from the availability of con- straints (spectroscopic or photometric redshifts, redshift ranges of the background sources) in the parametric modelling of strong lensing galaxy clusters and therefore on the retrieval of cosmological parameters. We find that substructures in the outskirts have a significant im- pact on the position of the multiple images, yielding tighter cosmological contours. The need for wide-field imaging around massive clusters is thus reinforced. We show that competitive cosmological constraints can be obtained also with complex multimodal clusters and that photometric redshifts improve the constraints on cosmological parameters when considering a narrow range of (spectroscopic) redshifts for the sources.
19 pages, 11 figures, 3 tables. Accepted for publication in MNRAS
References in corpus (15)
- The hierarchical formation of the brightest cluster galaxies
- A Bayesian approach to strong lensing modelling of galaxy clusters
- Galaxies in the Hubble Ultra Deep Field: I. Detection, Multiband Photometry, Photometric Redshifts, and Morphology
- Hubble Space Telescope Combined Strong and Weak Lensing Analysis of the CLASH Sample: Mass and Magnification Models and Systematic Uncertainties
- COSMOS: 3D weak lensing and the growth of structure
- Cosmological Constraints from Strong Gravitational Lensing in Galaxy Clusters
- Modelling galaxy clustering in a high resolution simulation of structure formation
- Hubble Frontier Fields : A High Precision Strong Lensing Analysis of Galaxy Cluster MACSJ0416.1-2403 using ~200 Multiple Images
- A Hubble & Spitzer Space Telescope Survey for Gravitationally-Lensed Galaxies: Further Evidence for a Significant Population of Low Luminosity Galaxies beyond Redshift Seven
- The systematics of strong lens modeling quantified: the effects of constraint selection and redshift information on magnification, mass, and multiple image predictability
- Realistic simulations of gravitational lensing by galaxy clusters: extracting arc parameters from mock DUNE images
- The mass-concentration relation in lensing clusters: the role of statistical biases and selection effects
- From the core to the outskirts: structure analysis of three massive galaxy clusters
- Probing the Slope of Cluster Mass Profile with Gravitational Einstein Rings: Application to Abell 1689
- Quantifying the Impact of Cosmological Parameter Uncertainties on Strong Lensing Models With an Eye Toward the Frontier Fields
Cited by in corpus (52)
- RELICS: Reionization Lensing Cluster Survey
- An Atlas of MUSE Observations towards Twelve Massive Lensing Clusters
- UNCOVERing the extended strong lensing structures of Abell 2744 with the deepest JWST imaging
- Measuring the value of the Hubble constant "à la Refsdal"
- On the observability of individual Population III stars and their stellar-mass black hole accretion disks through cluster caustic transits
- Mass distribution in the core of MACS J1206: robust modeling from an exceptionally large sample of central multiple images
- Strong Lens Models for 37 Clusters of Galaxies from the SDSS Giant Arcs Survey
- New high-precision strong lensing modeling of Abell 2744. Preparing for JWST observations
- Probing 3D Structure with a Large MUSE Mosaic: Extending the Mass Model of Frontier Field Abell 370
- The UNCOVER Survey: A First-look HST+JWST Catalog of Galaxy Redshifts and Stellar Population Properties Spanning
- Dissection of the collisional and collisionless mass components in a mini sample of CLASH and HFF massive galaxy clusters at
- The Hubble constant from SN Refsdal
- Growing a `Cosmic Beast': Observations and Simulations of MACS J0717.5+3745
- How robustly can we constrain the low-mass end of the stellar mass function? -- The limits of lensing models and stellar population assumptions in the Hubble Frontier Fields
- On the faint-end of the galaxy luminosity function in the Epoch of Reionization: updated constraints from the HST Frontier Fields
- First JWST observations of a gravitational lens: Mass model from new multiple images with near-infrared observations of SMACS J0723.3-7327
- Galaxy cluster strong lensing cosmography: cosmological constraints from a sample of regular galaxy clusters
- RELICS: Strong Lensing Analysis of MACS J0417.5-1154 and Predictions for Observing the Magnified High-Redshift Universe with JWST
- The core of the massive cluster merger MACS J0417.5-1154 as seen by VLT/MUSE
- An Evaluation of 10 Lensing Models of the Frontier Fields Cluster MACSJ0416.1-2403
- VLT/MUSE observations of SDSS J1029+2623: towards a high-precision strong lensing model
- Dark Matter in Galaxy Clusters: a Parametric Strong Lensing Approach
- A versatile tool for cluster lensing source reconstruction. I. methodology and illustration on sources in the Hubble Frontier Field Cluster MACS J0717.5+3745
- Systematic vs. Statistical Uncertainties in Masses and Magnifications of the Hubble Frontier Fields
- Galaxy cluster cores as seen with VLT/MUSE: new strong-lensing analyses of RX J2129.4+0009, MS 0451.6-0305 & MACSJ2129.4-0741
- The ALMA Frontier Fields Survey - IV. Lensing-corrected 1.1 mm number counts in Abell 2744, MACSJ0416.1-2403 and MACSJ1149.5+2223
- Beyond the Ultra-deep Frontier Fields And Legacy Observations (BUFFALO): a high-resolution strong + weak-lensing view of Abell 370
- Strong lensing modeling in galaxy clusters as a promising method to test cosmography I. Parametric dark energy models
- Exploring Effects on Magnifications due to Line-of-Sight Galaxies in the Hubble Frontier Fields
- High Resolution spatial analysis of a z 2 lensed galaxy using adaptive coadded source-plane reconstruction
- Exploring the low-mass regime of galaxy-scale strong lensing: Insights into the mass structure of cluster galaxies
- Improving parametric mass modelling of lensing clusters through a perturbative approach
- Evolution of the Lyman-α emitting fraction and UV properties of lensed star-forming galaxies between 2.9 < z < 6.7
- Cosmology with supernova Encore in the strong lensing cluster MACS J0138-2155: Lens model comparison and H0 measurement
- Reconstructing the extended structure of multiple sources strongly lensed by the ultra-massive elliptical galaxy SDSS J0100+1818
- The first GLIMPSE of the faint galaxy population at Cosmic Dawn with JWST: The evolution of the ultraviolet luminosity function across z~9-15
- Strong Lensing Model of SPT-CLJ0356-5337, a Major Merger Candidate at Redshift 1.0359
- Lessons from the first multiply imaged supernova II: A parametric strong-lensing model for the galaxy cluster MACS J1149.5+2223
- Efficient Mass Estimate at the Core of Strong Lensing Galaxy Clusters Using the Einstein Radius
- Core Mass Estimates in Strong Lensing Galaxy Clusters Using a Single-Halo Lens Model
- Unveiling the Universe with Emerging Cosmological Probes
- Enhanced strong-lensing model of MACS~J0138.02155 based on new JWST and VLT/MUSE observations
- Mapping dark matter in the Bullet Cluster using JWST imaging and spectroscopy
- Assembling a RELIC at Redshift 1: Spectroscopic Observations of Galaxies in the RELICS Cluster SPT-CLJ0615-5746
- Neutral hydrogen lensing simulations in the Hubble Frontier Fields
- CURLING -- II. Improvement on the Inference from Pixelized Cluster Strong Lens Modeling
- Cosmography from accurate mass modeling of the lens group SDSS J0100+1818: five sources at three different redshifts
- MrMARTIAN: A Multi-resolution Mass Reconstruction Algorithm Combining Free-form and Analytic Components
- Parametric strong lensing model of the galaxy cluster Abell 2390 from Euclid and MUSE observations
- The impact of ultraviolet suppression on the rates and properties of strongly lensed Type IIn supernovae detected by LSST
- Core Mass Estimates in Strong Lensing Galaxy Clusters: a Comparison Between Masses Obtained from Detailed Lens Models, Single-Halo Lens Models, and Einstein Radii
- The BUFFALO HST Survey