A study of the sensitivity of shape measurements to the input parameters of weak lensing image simulations
arXiv:1609.03281 · doi:10.1093/mnras/stx724
Abstract
Improvements in the accuracy of shape measurements are essential to exploit the statistical power of planned imaging surveys that aim to constrain cosmological parameters using weak lensing by large-scale structure. Although a range of tests can be performed using the measurements, the performance of the algorithm can only be quantified using simulated images. This yields, however, only meaningful results if the simulated images resemble the real observations sufficiently well. In this paper we explore the sensitivity of the multiplicative bias to the input parameters of Euclid-like image simulations.We find that algorithms will need to account for the local density of sources. In particular the impact of galaxies below the detection limit warrants further study, because magnification changes their number density, resulting in correlations between the lensing signal and multiplicative bias. Although achieving sub-percent accuracy will require further study, we estimate that sufficient archival Hubble Space Telescope data are available to create realistic populations of galaxies.
18 pages, accepted for publications in MNRAS
References in corpus (20)
- The Cosmic Evolution Survey (COSMOS) -- Overview
- Wide-Field InfrarRed Survey Telescope-Astrophysics Focused Telescope Assets WFIRST-AFTA 2015 Report
- KiDS-450: Cosmological parameter constraints from tomographic weak gravitational lensing
- The All-wavelength Extended Groth Strip International Survey (AEGIS) Data Sets
- Galaxies in the Hubble Ultra Deep Field: I. Detection, Multiband Photometry, Photometric Redshifts, and Morphology
- The Canadian Cluster Comparison Project: detailed study of systematics and updated weak lensing masses
- The Shear TEsting Programme 2: Factors affecting high precision weak lensing analyses
- The Intrinsic Alignment of Galaxies and its Impact on Weak Gravitational Lensing in an Era of Precision Cosmology
- Practical Weak Lensing Shear Measurement with Metacalibration
- Image Analysis for Cosmology: Results from the GREAT10 Galaxy Challenge
- Calibration of weak-lensing shear in the Kilo-Degree Survey
- Means of confusion: how pixel noise affects shear estimates for weak gravitational lensing
- PSF calibration requirements for dark energy from cosmic shear
- Metacalibration: Direct Self-Calibration of Biases in Shear Measurement
- Looking through the same lens: shear calibration for LSST, Euclid & WFIRST with stage 4 CMB lensing
- The Advanced Camera for Surveys General Catalog: Structural Parameters for Approximately Half a Million Galaxies
- A skewer survey of the Galactic halo from deep CFHT and INT images
- M-Dwarfs at Large Heliocentric Distances
- A fast empirical method for galaxy shape measurements in weak lensing surveys
- The impact of cosmic variance on simulating weak lensing surveys
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- Euclid. I. Overview of the Euclid mission
- Weak lensing for precision cosmology
- Practical Weak Lensing Shear Measurement with Metacalibration
- Dark Energy Survey Year 1 Results: Weak Lensing Shape Catalogues
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- KiDS-1000 catalogue: Weak gravitational lensing shear measurements
- Cluster Mass Calibration at High Redshift: HST Weak Lensing Analysis of 13 Distant Galaxy Clusters from the South Pole Telescope Sunyaev-Zel'dovich Survey
- DES Y3 results: Blending shear and redshift biases in image simulations
- Euclid. II. The VIS Instrument
- Towards emulating cosmic shear data: Revisiting the calibration of the shear measurements for the Kilo-Degree Survey
- Scientific Synergy Between LSST and Euclid
- Euclid Preparation IV. Impact of undetected galaxies on weak-lensing shear measurements
- Dark Energy Survey Year 1 Results: The Impact of Galaxy Neighbours on Weak Lensing Cosmology with im3shape
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- The Richness-to-Mass Relation of CAMIRA Galaxy Clusters from Weak-lensing Magnification in the Subaru Hyper Suprime-Cam Survey
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- Cosmology Intertwined: A Review of the Particle Physics, Astrophysics, and Cosmology Associated with the Cosmological Tensions and Anomalies
- KiDS-1000: Constraints on the intrinsic alignment of luminous red galaxies
- Weak-lensing shear measurement with machine learning: teaching artificial neural networks about feature noise
- GAMA+KiDS: Alignment of galaxies in galaxy groups and its dependence on galaxy scale
- Constraining the masses of high-redshift clusters with weak lensing: Revised shape calibration testing for the impact of stronger shears and increased blending
- A highly precise shear bias estimator independent of the measured shape noise
- The dependence of intrinsic alignment of galaxies on wavelength using KiDS and GAMA
- Precise weak lensing constraints from deep high-resolution images: VLT/HAWK-I analysis of the super-massive galaxy cluster RCS2232727.7020437 at
- Calibration of colour gradient bias in shear measurement using HST/CANDELS data
- Mitigating the effects of undersampling in weak lensing shear estimation with metacalibration
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- Anisotropies of Cosmic Optical and Near-IR Background from China Space Station Telescope (CSST)
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- UNIONS: The impact of systematic errors on weak-lensing peak counts
- A fully data-driven algorithm for accurate shear estimation
- Noise from Undetected Sources in Dark Energy Survey Images
- Euclid preparation. LIII. LensMC, weak lensing cosmic shear measurement with forward modelling and Markov Chain Monte Carlo sampling
- Euclid preparation: XLVIII. The pre-launch Science Ground Segment simulation framework
- Shear measurement bias I: dependencies on methods, simulation parameters and measured parameters
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- The Effects of Calibration on the Bias of Shear Measurements
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- The chromatic Point Spread Function of weak lensing measurement in Chinese Space Station survey Telescope
- Synthetic Galaxy Clusters and Observations Based on Dark Energy Survey Year 3 Data
- Euclid preparation. LXVII. Deep learning true galaxy morphologies for weak lensing shear bias calibration
- Blending effects on shear measurement synergy between Euclid-like and LSST-like surveys
- Shear measurement bias II: a fast machine learning calibration method
- Quantifying the impact of detection bias from blended galaxies on cosmic shear surveys
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- Diffusion-based Galaxy Simulations for the Roman High Latitude Survey
- GalSBI: Phenomenological galaxy population model for cosmology using simulation-based inference
- Dark Energy Survey Year 3 results: Cosmology with peaks using an emulator approach
- Emulating redshift mixing due to blending in weak gravitational lensing
- Forecasting the potential of weak lensing magnification to enhance LSST large-scale structure analyses