Cosmology with Gravitational Lensing
arXiv:1109.1121 · doi:10.1007/978-90-481-8685-3_3
Abstract
In these lectures I give an overview of gravitational lensing, concentrating on theoretical aspects, including derivations of some of the important results. Topics covered include the determination of surface mass densities of intervening lenses, as well as the statistical analysis of distortions of galaxy images by general inhomogeneities (cosmic shear), both in 2D projection on the sky, and in 3D where source distance information is available. 3D mass reconstruction and the shear ratio test are also considered, and the sensitivity of observables to Dark Energy is used to show how its equation of state may be determined using weak lensing. Finally, the article considers the prospect of testing Einstein's General Relativity with weak lensing, exploiting the differences in growth rates of perturbations in different models.} \abstract{In these lectures I give an overview of gravitational lensing, concentrating on theoretical aspects, including derivations of some of the important results. Topics covered include the determination of surface mass densities of intervening lenses, as well as the statistical analysis of distortions of galaxy images by general inhomogeneities (cosmic shear), both in 2D projection on the sky, and in 3D where source distance information is available. 3D mass reconstruction and the shear ratio test are also considered, and the sensitivity of observables to Dark Energy is used to show how its equation of state may be determined using weak lensing. Finally, the article considers the prospect of testing Einstein's General Relativity with weak lensing, exploiting the differences in growth rates of perturbations in different models.
Lectures given at Como Summer School 2007, now published (in 'Dark Matter and Dark Energy', 2011, ASSL 370, eds. Matarrese, Colpi, Gorini, Moschella)
References in corpus (17)
- Dark energy constraints from cosmic shear power spectra: impact of intrinsic alignments on photometric redshift requirements
- Measuring the dark side (with weak lensing)
- Parameterized Beyond-Einstein Growth
- Dark matter maps reveal cosmic scaffolding
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys -I. Methodology and a Fast Fitting Algorithm
- Observational Tests of Modified Gravity
- Halo mass - concentration relation from weak lensing
- Dark Energy versus Modified Gravity
- Potential sources of contamination to weak lensing measurements: constraints from N-body simulations
- Systematic Bias in Cosmic Shear: Beyond the Fisher Matrix
- On model selection forecasting, Dark Energy and modified gravity
- Bayesian Galaxy Shape Measurement for Weak Lensing Surveys -II. Application to Simulations
- Probing dark energy with the shear-ratio geometric test
- The removal of shear-ellipticity correlations from the cosmic shear signal via nulling techniques
- Measuring dark energy properties with 3D cosmic shear
- Systematic effects on dark energy from 3D weak shear
- Cosmological constraints from COMBO-17 using 3D weak lensing