Image Simulation with Shapelets
arXiv:astro-ph/0301449 · doi:10.1111/j.1365-2966.2004.07353.x
Abstract
We present a method to simulate deep sky images, including realistic galaxy morphologies and telescope characteristics. To achieve a wide diversity of simulated galaxy morphologies, we first use the shapelets formalism to parametrize the shapes of all objects in the Hubble Deep Fields. We measure this distribution of real galaxy morphologies in shapelet parameter space, then resample it to generate a new population of objects. These simulated galaxies can contain spiral arms, bars, discs, arbitrary radial profiles and even dust lanes or knots. To create a final image, we also model observational effects, including noise, pixellisation, astrometric distortions and a Point-Spread Function. We demonstrate that they are realistic by showing that simulated and real data have consistent distributions of morphology diagnostics: including galaxy size, ellipticity, concentration and asymmetry statistics. Sample images are made available on the world wide web. These simulations are useful to develop and calibrate precision image analysis techniques for photometry, astrometry, and shape measurement. They can also be used to assess the sensitivity of future telescopes and surveys for applications such as supernova searches, microlensing, proper motions, and weak gravitational lensing.
MNRAS in press. Updated to reflect accepted version, including extra statistical tests
References in corpus (1)
Cited by in corpus (38)
- Detailed Decomposition of Galaxy Images. II. Beyond Axisymmetric Models
- The Shear TEsting Programme 1: Weak lensing analysis of simulated ground-based observations
- Weak Gravitational Lensing with COSMOS: Galaxy Selection and Shape Measurements
- The Canadian Cluster Comparison Project: detailed study of systematics and updated weak lensing masses
- Very weak lensing in the CFHTLS Wide: Cosmology from cosmic shear in the linear regime
- The Shear TEsting Programme 2: Factors affecting high precision weak lensing analyses
- Evidence for the accelerated expansion of the Universe from weak lensing tomography with COSMOS
- COSMOS: 3D weak lensing and the growth of structure
- CLASH: The Concentration-Mass Relation of Galaxy Clusters
- Polar Shapelets
- Means of confusion: how pixel noise affects shear estimates for weak gravitational lensing
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys -II. Application to Simulations
- Automated detection of galaxy-scale gravitational lenses in high resolution imaging data
- A Detection of Weak Lensing Magnification using Galaxy Sizes and Magnitudes
- Realistic simulations of gravitational lensing by galaxy clusters: extracting arc parameters from mock DUNE images
- Weak gravitational shear and flexion with polar shapelets
- An Enlarged Cosmic Shear Survey with the William Herschel Telescope
- The non-Gaussianity of the cosmic shear likelihood - or: How odd is the Chandra Deep Field South?
- Weak Lensing from Space II: Dark Matter Mapping
- Limitations for shapelet-based weak-lensing measurements
- Deep Generative Models for Galaxy Image Simulations
- The 3-Dimensional Distribution of Dust in NGC 891
- A new tool for image analysis based on Chebyshev rational functions: CHEF functions
- Sources of contamination to weak lensing tomography: redshift-dependent shear measurement bias
- Flexion measurement in simulations of Hubble Space Telescope data
- Morphological classification of galaxies and its relation to physical properties
- Measuring the Geometry of the Universe from Weak Gravitational Lensing behind Galaxy Groups in the HST COSMOS survey
- Modal decomposition of astronomical images with application to shapelets
- Pixelation Effects in Weak Lensing
- Galaxy Modeling with Compound Elliptical Shapelets
- Color, 3D simulated images with shapelets
- Weak Lensing Measurements in Simulations of Radio Images
- De-noising the galaxies in the Hubble XDF with EMPCA
- Euclid preparation. LXVII. Deep learning true galaxy morphologies for weak lensing shear bias calibration
- Three-dimensional shapelets and an automated classification scheme for dark matter haloes
- Oxford SWIFT IFS and multi-wavelength observations of the Eagle galaxy at z=0.77
- Simulating Photometric Images of Moving Targets with Photon-mapping
- Lossy compression of weak lensing data