Catastrophic photometric redshift errors: weak lensing survey requirements
arXiv:0902.2782 · doi:10.1111/j.1365-2966.2009.15748.x
Abstract
We study the sensitivity of weak lensing surveys to the effects of catastrophic redshift errors - cases where the true redshift is misestimated by a significant amount. To compute the biases in cosmological parameters, we adopt an efficient linearized analysis where the redshift errors are directly related to shifts in the weak lensing convergence power spectra. We estimate the number Nspec of unbiased spectroscopic redshifts needed to determine the catastrophic error rate well enough that biases in cosmological parameters are below statistical errors of weak lensing tomography. While the straightforward estimate of Nspec is ~10^6 we find that using only the photometric redshifts with z<=2.5 leads to a drastic reduction in Nspec to ~30,000 while negligibly increasing statistical errors in dark energy parameters. Therefore, the size of spectroscopic survey needed to control catastrophic errors is similar to that previously deemed necessary to constrain the core of the z_s-z_p distribution. We also study the efficacy of the recent proposal to measure redshift errors by cross-correlation between the photo-z and spectroscopic samples. We find that this method requires ~10% a priori knowledge of the bias and stochasticity of the outlier population, and is also easily confounded by lensing magnification bias. The cross-correlation method is therefore unlikely to supplant the need for a complete spectroscopic redshift survey of the source population.
14 pages, 3 figures
References in corpus (26)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Data Processing, Sky Maps, and Basic Results
- Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements
- Weak Gravitational Lensing and its Cosmological Applications
- The Shear TEsting Programme 2: Factors affecting high precision weak lensing analyses
- Effects of Baryons and Dissipation on the Matter Power Spectrum
- Cosmology with Weak Lensing Surveys
- Estimating the Redshift Distribution of Faint Galaxy Samples
- Systematic Bias in Cosmic Shear: Beyond the Fisher Matrix
- The Impact of Non-Gaussian Errors on Weak Lensing Surveys
- Estimating the Redshift Distribution of Photometric Galaxy Samples II. Applications and Tests of a New Method
- Precision photometric redshift calibration for galaxy-galaxy weak lensing
- PSF calibration requirements for dark energy from cosmic shear
- Comprehensive Two-Point Analyses of Weak Gravitational Lensing Surveys
- Probing dark energy with cluster counts and cosmic shear power spectra: including the full covariance
- The removal of shear-ellipticity correlations from the cosmic shear signal via nulling techniques
- Photo-z for weak lensing tomography from space: the role of optical and near-IR photometry
- Using Galaxy Two-point Correlation Functions to Determine the Redshift Distributions of Galaxies Binned by Photometric Redshift
- Self Calibration of Tomographic Weak Lensing for the Physics of Baryons to Constrain Dark Energy
- Systematic effects on dark energy from 3D weak shear
- Photometric Redshift Error Estimators
- Biased Dark Energy Constraints from Neglecting Reduced Shear in Weak Lensing Surveys
- Photometric Redshifts for the Dark Energy Survey and VISTA and Implications for Large Scale Structure
- Size of spectroscopic calibration samples for cosmic shear photometric redshifts
- The galaxy-galaxy lensing contribution to the cosmic shear two point function
- SuperNova Acceleration Probe (SNAP): Investigating Photometric Redshift Optimization
- Diagnosing space telescope misalignment and jitter using stellar images
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- Cosmology with cosmic shear observations: a review
- Dark Energy Survey Year 3 Results: Cosmology from Cosmic Shear and Robustness to Data Calibration
- Weak lensing for precision cosmology
- The Intrinsic Alignment of Galaxies and its Impact on Weak Gravitational Lensing in an Era of Precision Cosmology
- DESI and other dark energy experiments in the era of neutrino mass measurements
- CFHTLenS revisited: assessing concordance with Planck including astrophysical systematics
- Constraints on intrinsic alignment contamination of weak lensing surveys using the MegaZ-LRG sample
- Simultaneous measurement of cosmology and intrinsic alignments using joint cosmic shear and galaxy number density correlations
- Constraining primordial non-Gaussianity with future galaxy surveys
- Results of the GREAT08 Challenge: An image analysis competition for cosmological lensing
- Redshift distributions of galaxies in the DES Science Verification shear catalogue and implications for weak lensing
- The impact of intrinsic alignment on current and future cosmic shear surveys
- CFHTLenS tomographic weak lensing: Quantifying accurate redshift distributions
- On using angular cross-correlations to determine source redshift distributions
- Accounting for baryonic effects in cosmic shear tomography: Determining a minimal set of nuisance parameters using PCA
- Photometric Redshifts for Next-Generation Surveys
- Spectroscopic Needs for Imaging Dark Energy Experiments: Photometric Redshift Training and Calibration
- Modeling the angular correlation function and its full covariance in Photometric Galaxy Surveys
- Looking through the same lens: shear calibration for LSST, Euclid & WFIRST with stage 4 CMB lensing
- Cosmological tests of General Relativity: a principal component analysis
- Reconstructing Redshift Distributions with Cross-Correlations: Tests and an Optimized Recipe
- Evaluation of probabilistic photometric redshift estimation approaches for The Rubin Observatory Legacy Survey of Space and Time (LSST)
- Cross-Correlation of spectroscopic and photometric galaxy surveys: cosmology from lensing and redshift distortions
- Weak lensing, dark matter and dark energy
- General Requirements on Matter Power Spectrum Predictions for Cosmology with Weak Lensing Tomography
- A General Study of the Influence of Catastrophic Photometric Redshift Errors on Cosmology with Cosmic Shear Tomography
- An accurate and practical method for inference of weak gravitational lensing from galaxy images
- Cosmology with the Large Synoptic Survey Telescope: an Overview
- Anomaly detection for machine learning redshifts applied to SDSS galaxies
- Constraining Neutrino Mass with the Tomographic Weak Lensing Bispectrum
- CFHTLenS and RCSLenS: Testing Photometric Redshift Distributions Using Angular Cross-Correlations with Spectroscopic Galaxy Surveys
- Cosmology with the Wide-Field Infrared Survey Telescope -- Synergies with the Rubin Observatory Legacy Survey of Space and Time
- Improving Photometric Redshift Estimation using GPz: size information, post processing and improved photometry
- 2dFLenS and KiDS: Determining source redshift distributions with cross-correlations
- Sample variance in photometric redshift calibration: cosmological biases and survey requirements
- Self calibration of gravitational shear-galaxy intrinsic ellipticity correlation in weak lensing surveys
- Effects of Unstable Dark Matter on Large-Scale Structure and Constraints from Future Surveys
- The impact of galaxy colour gradients on cosmic shear measurement
- Self calibration of photometric redshift scatter in weak lensing surveys
- Clustering-based redshift estimation: application to VIPERS/CFHTLS
- A bias in cosmic shear from galaxy selection: results from ray-tracing simulations
- Spectroscopic failures in photometric redshift calibration: cosmological biases and survey requirements
- Weak Lensing Tomographic Redshift Distribution Inference for the Hyper Suprime-Cam Subaru Strategic Program three-year shape catalogue
- Prospects for measuring the relative velocities of galaxy clusters in photometric surveys using the kinetic Sunyaev-Zel'dovich Effect
- SCUBA-2 Ultra Deep Imaging Eao Survey (Studies) III: Multi-wavelength properties, luminosity functions and preliminary source catalog of 450-m-selected galaxies
- Weak lensing magnification in the Dark Energy Survey Science Verification Data
- Photo-z outlier self-calibration in weak lensing surveys
- Weak lensing statistics from the Coyote Universe
- Self-Calibration for 3-point Intrinsic Alignment Auto-Correlations in Weak Lensing Surveys
- Background sky obscuration by cluster galaxies as a source of systematic error for weak lensing
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- Characterizing and Propagating Modeling Uncertainties in Photometrically-Derived Redshift Distributions
- Using Cross-Correlations to Calibrate Lensing Source Redshift Distributions: Improving Cosmological Constraints from Upcoming Weak Lensing Surveys
- Will Multiple Probes of Dark Energy find Modified Gravity?
- A proposal on the galaxy intrinsic alignment self-calibration in weak lensing surveys
- Weak Gravitational Lensing as a Method to Constrain Unstable Dark Matter
- Calibrating photometric redshift distributions with cross-correlations
- Cosmology from Clustering, Cosmic Shear, CMB Lensing, and Cross Correlations: Combining Rubin Observatory and Simons Observatory
- Characterizing unknown systematics in large scale structure surveys
- Estimating redshift distributions using Hierarchical Logistic Gaussian processes
- A Composite Likelihood Approach for Inference under Photometric Redshift Uncertainty
- Photometric Redshift Estimation with Galaxy Morphology using Self-Organizing Maps
- Instrumental systematics and weak gravitational lensing
- The impact of systematic uncertainties in N-body simulations on the precision cosmology from galaxy clustering: a halo model approach
- Photometric redshifts and intrinsic alignments: degeneracies and biases in 32pt analysis
- Non-negative matrix factorization for self-calibration of photometric redshift scatter in weak lensing surveys
- Peeling off the late Universe: Reconstructing the ISW map with galaxy surveys
- The source-lens clustering effect in the context of lensing tomography and its self-calibration
- Galaxy blending effects in deep imaging cosmic shear probes of cosmology
- pop-cosmos: Scaleable inference of galaxy properties and redshifts with a data-driven population model
- Designing Future Dark Energy Space Missions: II. Photometric Redshift of Space Weak Lensing Optimized Survey
- A Clipping Method to Mitigate the Impact of Catastrophic Photometric Redshift Errors on Weak Lensing Tomography
- Using 3D and 2D analysis for analyzing large-scale asymmetry in galaxy spin directions
- Cosmic Shear E/B-mode Estimation with Binned Correlation Function Data
- Cosmological studies from tomographic weak lensing peak abundances and impacts of photo-z errors
- Machine Learning Classification to Identify Catastrophic Outlier Photometric Redshift Estimates
- Galaxy Zoo Morphology and Photometric Redshifts in the Sloan Digital Sky Survey
- Giga-z: A 100,000 Object Superconducting Spectrophotometer for LSST Follow-up
- Kinematic Lensing Inference I: Characterizing Shape Noise with Simulated Analyses
- The Impact of Photometric Redshift Errors on Lensing Statistics in Ray-Tracing Simulations
- Testing the Consistence of Gamma Ray Burst Data-set and Supernovae Union2
- Optimising the shape of photometric redshift distributions with clustering cross-correlations
- Reconstructing galaxy fundamental distributions and scaling relations from photometric redshift surveys. Applications to the SDSS early-type sample
- Testing the Origin of the CMB Large-Angle Correlation Deficit with a Galaxy Imaging Survey
- How Future Space-Based Weak Lensing Surveys Might Obtain Photometric Redshifts Independently
- Intrinsic alignment from multiple shear estimates: A first application to data and forecasts for Stage IV
- Detecting Baryon Acoustic Oscillations in Dark Matter from Kinematic Weak Lensing Surveys
- Reconstructing redshift distributions with photometric galaxy clustering
- Effect of Our Galaxy's Motion on Weak Lensing Measurements of Shear and Convergence
- The Impact of Tomographic Redshift Bin Width Errors on Cosmological Probes
- Euclid: Optimising tomographic redshift binning for 32pt power spectrum constraints on dark energy