Magnification effects as measures of large-scale structure
arXiv:astro-ph/0208515 · doi:10.1086/345468
Abstract
The magnification effects of clustered matter produce variations in the image sizes and number density of galaxies across the sky. This paper advocates the use of these effects in wide field surveys to map large-scale structure and the profiles of galaxy and cluster sized halos. The magnitude of the size variation as a function of angular scale is computed and the signal-to-noise is estimated for different survey parameters. Forthcoming surveys, especially well designed space-based imaging surveys, will have high signal-to-noise on scales of about 0.1 arcminute to several degrees. Thus the clustering of matter could be measured on spatial scales of about 50 Kpc to 100 Mpc. The signal-to-noise is dominated by sample variance rather than shot-noise due to the finite number density of galaxies, hence the accuracy of the measurements will be limited primarily by survey area, sampling strategy and possible systematics. Methods based on magnification are compared with the use of shape distortions and the contrasts and complementarities are discussed. Future work needed to plan survey strategy and interpret measurements based on magnification is outlined.
5 pages, 1 figure, accepted for publication in ApJL
Cited by in corpus (31)
- Dusty Star-Forming Galaxies at High Redshift
- Gravitational Lensing
- Three-Point Correlations in Weak Lensing Surveys: Model Predictions and Applications
- Dark Energy Constraints from Weak Lensing Cross-Correlation Cosmography
- Comprehensive Two-Point Analyses of Weak Gravitational Lensing Surveys
- Weak lensing power spectra for precision cosmology: Multiple-deflection, reduced shear and lensing bias corrections
- Anisotropic Magnification Distortion of the 3D Galaxy Correlation: I. Real Space
- A Detection of Weak Lensing Magnification using Galaxy Sizes and Magnitudes
- Cosmology with the Large Synoptic Survey Telescope: an Overview
- Size Bias in Galaxy Surveys
- Corrective lenses for high redshift supernovae
- Weak Lensing from Space II: Dark Matter Mapping
- Anisotropic Magnification Distortion of the 3D Galaxy Correlation: II. Fourier and Redshift Space
- Complete Treatment of Galaxy Two-Point Statistics: Gravitational Lensing Effects and Redshift-Space Distortions
- Testing a new analytic model for gravitational lensing probabilities
- Cosmology from supernova magnification maps
- Self calibration of photometric redshift scatter in weak lensing surveys
- Constraining Cosmology with High Convergence Regions in Weak Lensing Surveys
- Halo model prediction of the cosmic magnification statistics: the full non-linear contribution
- Weak Lensing from Space I: Instrumentation and Survey Strategy
- From linear to non-linear scales: analytical and numerical predictions for the weak lensing convergence
- Size magnification as a complement to Cosmic Shear
- Weak Lensing of Baryon Acoustic Oscillations
- Magnification Bias Estimators for Realistic Surveys: an Application to the BOSS Survey
- Primordial Non-Gaussianity and the Statistics of Weak Lensing and other Projected Density Fields
- Shear and magnification angular power spectra and higher-order moments from weak gravitational lensing
- LeMoMaF: Lensed Mock Map Facility
- Large-scale imprint of relativistic effects in the cosmic magnification
- A method of weak lensing reconstruction through cosmic magnification with multi-band photometry information
- On Cross-correlating Weak Lensing Surveys
- Non-Gaussianity in the Squeezed Three-Point Correlation from the Relativistic Effects