Adaptive Semi-linear Inversion of Strong Gravitational Lens Imaging
arXiv:1412.7436 · doi:10.1093/mnras/stv1455
Abstract
We present a new pixelized method for the inversion of gravitationally lensed extended source images which we term adaptive semi-linear inversion (SLI). At the heart of the method is an h-means clustering algorithm which is used to derive a source plane pixelization that adapts to the lens model magnification. The distinguishing feature of adaptive SLI is that every pixelization is derived from a random initialization, ensuring that data discretization is performed in a completely different and unique way for every lens model parameter set. We compare standard SLI on a fixed source pixel grid with the new method and demonstrate the shortcomings of the former when modeling singular power law ellipsoid (SPLE) lens profiles. In particular, we demonstrate the superior reliability and efficiency of adaptive SLI which, by design, fixes the number of degrees of freedom (NDOF) of the optimization and thereby removes biases present with other methods that allow the NDOF to vary. In addition, we highlight the importance of data discretization in pixel-based inversion methods, showing that adaptive SLI averages over significant systematics that are present when a fixed source pixel grid is used. In the case of the SPLE lens profile, we show how the method successfully samples its highly degenerate posterior probability distribution function with a single non-linear search. The robustness of adaptive SLI provides a firm foundation for the development of a strong lens modeling pipeline, which will become necessary in the short-term future to cope with the increasing rate of discovery of new strong lens systems.
19 pages, 16 figures, 4 tables, Revised Submission to MNRAS
References in corpus (6)
- The Sloan Lens ACS Survey. V. The Full ACS Strong-Lens Sample
- The Structure & Dynamics of Massive Early-type Galaxies: On Homology, Isothermality and Isotropy inside one Effective Radius
- Bayesian Strong Gravitational-Lens Modeling on Adaptive Grids: Objective Detection of Mass Substructure in Galaxies
- Cosmological Constraints from the double source plane lens SDSSJ0946+1006
- Models of the Cosmic Horseshoe Gravitational Lens
- Herschel-ATLAS: Modelling the first strong gravitational lenses
Cited by in corpus (73)
- Lenstronomy: multi-purpose gravitational lens modelling software package
- Time Delay Cosmography
- AutoLens: Automated Modeling of a Strong Lens's Light, Mass and Source
- The Sloan Lens ACS Survey. XIII. Discovery of 40 New Galaxy-Scale Strong Lenses
- Revealing the complex nature of the strong gravitationally lensed system H-ATLAS J090311.6+003906 using ALMA
- The BOSS Emission-Line Lens Survey. IV. : Smooth Lens Models for the BELLS GALLERY Sample
- PyAutoLens: Open-Source Strong Gravitational Lensing
- GA-NIFS: The core of an extremely massive proto-cluster at the Epoch of Reionization probed with JWST/NIRSpec
- Testing Star Formation Laws in a Starburst Galaxy At Redshift 3 Resolved with ALMA
- Automated galaxy-galaxy strong lens modelling: no lens left behind
- Modelling high resolution ALMA observations of strongly lensed highly star forming galaxies detected by Herschel
- Galaxy structure with strong gravitational lensing: decomposing the internal mass distribution of massive elliptical galaxies
- A lensed radio jet at milli-arcsecond resolution I: Bayesian comparison of parametric lens models
- TDCOSMO. VII. Boxyness/discyness in lensing galaxies : Detectability and impact on
- Cosmological distance indicators
- Deep Learning the Morphology of Dark Matter Substructure
- CO, H2O, H2O+ line and dust emission in a z = 3.63 strongly lensed starburst merger at sub-kiloparsec scales
- Constraining the microlensing effect on time delays with new time-delay prediction model in measurements
- PyAutoFit: A Classy Probabilistic Programming Language for Model Composition and Fitting
- Toward an internally consistent astronomical distance scale
- Abell 1201: Detection of an Ultramassive Black Hole in a Strong Gravitational Lens
- A robust mass estimator for dark matter subhalo perturbations in strong gravitational lenses
- H0LiCOW VI. Testing the fidelity of lensed quasar host galaxy reconstruction
- Gravitational imaging through a triple source plane lens: revisiting the CDM-defying dark subhalo in SDSSJ0946+1006
- Beyond the bulge-halo conspiracy? Density profiles of Early-type galaxies from extended-source strong lensing
- Testing strong lensing subhalo detection with a cosmological simulation
- Systematic errors induced by the elliptical power-law model in galaxy-galaxy strong lens modeling
- Using wavelets to capture deviations from smoothness in galaxy-scale strong lenses
- Lensed: a code for the forward reconstruction of lenses and sources from strong lensing observations
- Strong Lensing by Galaxies
- Dark Disk Substructure and Superfluid Dark Matter
- A versatile tool for cluster lensing source reconstruction. I. methodology and illustration on sources in the Hubble Frontier Field Cluster MACS J0717.5+3745
- Chandra and ALMA observations of the nuclear activity in two strongly lensed star forming galaxies
- The Herschel-ATLAS: magnifications and physical sizes of m-selected strongly lensed galaxies
- The BOSS Emission-Line Lens Survey V. Morphology and Substructure of Lensed Lyman- Emitters at redshift in the BELLS GALLERY
- The Very Knotty Lenser: exploring the role of regularization in source and potential reconstructions using Gaussian Process Regression
- An alternative method to generate pre-initial conditions for cosmological -body simulations
- SLITronomy: towards a fully wavelet-based strong lensing inversion technique
- On the use of shapelets in modelling resolved, gravitationally lensed images
- Sparse Lens Inversion Technique (SLIT): lens and source separability from linear inversion of the source reconstruction problem
- One never walks alone: the effect of the perturber population on subhalo measurements in strong gravitational lenses
- Auto-identification of unphysical source reconstructions in strong gravitational lens modelling
- The COSMOS-Web ring: in-depth characterization of an Einstein ring lensing system at z~2
- Microlensing and the type Ia supernova iPTF16geu
- Decoding Dark Matter Substructure without Supervision
- Measuring line-of-sight shear with Einstein rings: a proof of concept
- A Glimpse of the Stellar Populations and Elemental Abundances of Gravitationally Lensed, Quiescent Galaxies at with Keck Deep Spectroscopy
- Modelling high-resolution ALMA observations of strongly lensed dustystar forming galaxies detected by Herschel
- High Resolution spatial analysis of a z 2 lensed galaxy using adaptive coadded source-plane reconstruction
- ALMA resolves the first strongly-lensed Optical/NIR-dark galaxy
- A kiloparsec-scale ordered magnetic field in a galaxy at z=5.6
- The COSMOS-Web Lens Survey (COWLS) I: Discovery of >100 high redshift strong lenses in contiguous JWST imaging
- A model for galaxy-galaxy strong lensing statistics in surveys
- A new Einstein Cross gravitational lens of a Lyman-break galaxy
- Exploiting the diversity of modeling methods to probe systematic biases in strong lensing analyses
- Discovery of a radio jet in the Cloverleaf Quasar at z = 2.56
- Elliptical multipoles for gravitational lenses
- The Way of Water: ALMA resolves H2O emission lines in a strongly lensed dusty star-forming galaxy at z 3.1
- A forward-modelling method to infer the dark matter particle mass from strong gravitational lenses
- Probing General Relativity in galactic scales at z
- The COSMOS-Web Lens Survey (COWLS) II: depth, resolution, and NIR coverage from JWST reveal 17 spectacular lenses
- Pixel-level modelling of group-scale strong lens CASSOWARY 19
- Modeling Strong Lenses from Wide-Field Ground-Based Observations in KiDS and GAMA
- Source REconstruction of Arcs behind Cluster Halos (SourceREACH): A New Source Reconstruction Algorithm Optimized for Giant Arcs and Galaxy Cluster Lenses
- Halo concentration strengthens dark matter constraints in galaxy-galaxy strong lensing analyses
- Galaxy-scale lens search in the PEARLS NEP TDF and CEERS JWST fields
- Galaxy-galaxy strong lens perturbations: line-of-sight haloes versus lens subhaloes
- Investigation of mass substructure in gravitational lens system SDP.81 with ALMA long-baseline observations
- Measuring the Stellar-to-Halo Mass Relation at Solar masses, using forthcoming space-based imaging of galaxy-galaxy strong lenses
- Systematics in ETG Mass Profile Modelling: Strong Lensing & Stellar Dynamics
- Gravitational Lensing of Gravitational Waves from Astrophysical Sources: Theory, Detection, and Applications
- Hiding behind a curtain of dust: Gas and dust properties of an ultra-luminous strongly-lensed z = 3.75 galaxy behind the Milky Way disk
- An improved time delay from VLA and ATCA monitoring of the gravitational lens system PKS 1830-211