2003•The Astrophysical JournalOpen access

How Sensitive Are Weak Lensing Statistics to Dark Energy Content?

Dipak Munshi, Yun Wang

Open full text 24 citations

Abstract

Future weak lensing surveys will directly probe the clustering of dark matter, in addition to providing a test for various cosmological models. Recent studies have provided us with the tools that can be used to construct the complete probability distribution function for convergence fields. It is also possible to construct the bias associated with the hot spots in convergence maps. These techniques can be used in both the quasi-linear and the highly nonlinear regimes using various well-developed numerical methods. We use the results here to study the weak lensing statistics of cosmological models with dark energy. We study how well various classes of dark energy models can be distinguished from models with a cosmological constant. We find that the ratio of the square root of the variance of convergence is complementary to the convergence skewness S 3 in probing the dark energy equation of state; it can be used to predict the expected difference in weak lensing statistics between various dark energy models and for choosing optimized smoothing angles to constrain a given class of dark energy models. Our results should be useful for probing dark energy using future weak lensing data with high statistics from galaxy weak lensing surveys and supernova pencil beam surveys.

Open-access reader

About this research paper

What this paper is about

Future weak lensing surveys will directly probe the clustering of dark matter, in addition to providing a test for various cosmological models. Recent studies have provided us with the tools that can be used to construct the complete probability distribution function for convergence fields. It is also possible to construct the bias associated with the hot spots in convergence maps. These techniques can be used in both the quasi-linear and the highly nonlinear regimes using various well-developed numerical methods. We use the results here to study the weak lensing statistics of cosmological models with dark energy. We study how well various classes of dark energy models can be distinguished from models with a cosmological constant. We find that the ratio of the square root of the variance of convergence is complementary to the convergence skewness S 3 in probing the dark energy equation of state; it can be used to predict the expected difference in weak lensing statistics between various dark energy models and for choosing optimized smoothing angles to constrain a given class of dark energy models. Our results should be useful for probing dark energy using future weak lensing data with high statistics from galaxy weak lensing surveys and supernova pencil beam surveys.

Why it matters

OpenAlex reports 24 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Future weak lensing surveys will directly probe the clustering of dark matter, in addition to providing a test for various cosmological models. Recent studies have provided us with the tools that can be used to construct the complete probability distribution function for convergence fields. It is also possible to construct the bias associated with the hot spots in convergence maps. These techniques can be used in both the quasi-linear and the highly nonlinear regimes using various well-developed numerical methods. We use the results here to study the weak lensing statistics of cosmological models with dark energy. We study how well various classes of dark energy models can be distinguished from models with a cosmological constant. We find that the ratio of the square root of the variance of convergence is complementary to the convergence skewness S 3 in probing the dark energy equation of state; it can be used to predict the expected difference in weak lensing statistics between various dark energy models and for choosing optimized smoothing angles to constrain a given class of dark energy models. Our results should be useful for probing dark energy using future weak lensing data with high statistics from galaxy weak lensing surveys and supernova pencil beam surveys.

Key concepts: Dark energy, Weak gravitational lensing, Physics, Gravitational lensing formalism, Dark matter, Strong gravitational lensing, Lambda-CDM model, Redshift

Related papers

Back to paper searchBrowse research topicsOriginal source
How Sensitive Are Weak Lensing Statistics to Dark Energy Content? — Research Paper | ScholarLens