Towards a full $w$CDM map-based analysis for weak lensing surveys
Dominik Z\"urcher, Janis Fluri, Virginia Ajani, Silvan Fischbacher,, Alexandre Refregier, Tomasz Kacprzak

TL;DR
This paper advances weak lensing cosmology by extending forward-modeling to include higher-order mass-map statistics, comparing various filters and survey setups to optimize parameter constraints.
Contribution
It introduces a comprehensive methodology for analyzing mass maps with multiple statistics and filters, improving cosmological parameter inference for future surveys.
Findings
Starlet filters outperform Gaussian filters.
Using 10 tomographic bins improves constraints.
Combining power spectrum, peak counts, and Minkowski functionals yields best results.
Abstract
The next generation of weak lensing surveys will measure the matter distribution of the local Universe with unprecedented precision, allowing the resolution of non-Gaussian features of the convergence field. This encourages the use of higher-order mass-map statistics for cosmological parameter inference. We extend the forward-modelling based methodology introduced in a previous forecast paper to match these new requirements. We provide multiple forecasts for the wCDM parameter constraints that can be expected from stage 3 and 4 weak lensing surveys. We consider different survey setups, summary statistics and mass map filters including wavelets. We take into account the shear bias, photometric redshift uncertainties and intrinsic alignment. The impact of baryons is investigated and the necessary scale cuts are applied. We compare the angular power spectrum analysis to peak and minima…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Monetary Policy and Economic Impact · Cosmology and Gravitation Theories
