The Origin of Weak Lensing Convergence Peaks
arXiv:1606.01318 · doi:10.1103/PhysRevD.94.043533
Abstract
Weak lensing convergence peaks are a promising tool to probe nonlinear structure evolution at late times, providing additional cosmological information beyond second-order statistics. Previous theoretical and observational studies have shown that the cosmological constraints on and are improved by a factor of up to ~ 2 when peak counts and second-order statistics are combined, compared to using the latter alone. We study the origin of lensing peaks using observational data from the 154 deg Canada-France-Hawaii Telescope Lensing Survey. We found that while high peaks (with height >3.5 , where is the r.m.s. of the convergence ) are typically due to one single massive halo of ~, low peaks ( <~ ) are associated with constellations of 2-8 smaller halos (<~). In addition, halos responsible for forming low peaks are found to be significantly offset from the line-of-sight towards the peak center (impact parameter >~ their virial radii), compared with ~0.25 virial radii for halos linked with high peaks, hinting that low peaks are more immune to baryonic processes whose impact is confined to the inner regions of the dark matter halos. Our findings are in good agreement with results from the simulation work by Yang el al. (2011).
10 pages, 10 figures; v2 matches PRD accepted version, results unchanged
References in corpus (4)
- Baryon effects on the internal structure of LCDM halos in the EAGLE simulations
- Cosmological Constraints From Weak Lensing Peak Statistics With CFHT Stripe 82 Survey
- A new model to predict weak-lensing peak counts I. Comparison with -body Simulations
- Impact of Baryonic Processes on Weak Lensing Cosmology: Power Spectrum, Non-Local Statistics, and Parameter Bias
Cited by in corpus (40)
- Dark energy two decades after: Observables, probes, consistency tests
- KiDS-450: Cosmological Constraints from Weak Lensing Peak Statistics - II: Inference from Shear Peaks using N-body Simulations
- Non-Gaussian information from weak lensing data via deep learning
- Cosmological constraints from noisy convergence maps through deep learning
- Breaking degeneracies in modified gravity with higher (than 2nd) order weak-lensing statistics
- Cosmological Forecast for non-Gaussian Statistics in large-scale weak Lensing Surveys
- Constraining neutrino mass with tomographic weak lensing peak counts
- CMB Lensing Beyond the Power Spectrum: Cosmological Constraints from the One-Point PDF and Peak Counts
- Weak lensing by voids in weak lensing maps
- TNG: Effect of Baryonic Processes on Weak Lensing with IllustrisTNG Simulations
- Effects of baryons on weak lensing peak statistics
- CosmoGridV1: a simulated CDM theory prediction for map-level cosmological inference
- Do dark matter halos explain lensing peaks?
- Weak lensing peak statistics in the era of large scale cosmological surveys
- Isotropy analyses of the Planck convergence map
- Weak lensing mass reconstruction using sparsity and a Gaussian random field
- The impact of baryonic physics and massive neutrinos on weak lensing peak statistics
- New insights on the dissociative merging galaxy cluster Abell 2034
- Statistical connection of peak counts to power spectrum and moments in weak lensing field
- Towards a full CDM map-based analysis for weak lensing surveys
- Cosmological forecasts with the clustering of weak lensing peaks
- Revising the merger scenario of the galaxy cluster Abell 1644: a new gas poor structure discovered by weak gravitational lensing
- The self similarity of weak lensing peaks
- Geometry and growth contributions to cosmic shear observables
- Optimal void finders in weak lensing maps
- Comparing weak lensing peak counts in baryonic correction models to hydrodynamical simulations
- The FLAMINGO project: Baryonic impact on weak gravitational lensing convergence peak counts
- UNIONS: The impact of systematic errors on weak-lensing peak counts
- Cosmological Constraints from Weak Lensing Peaks: Can Halo Models Accurately Predict Peak Counts?
- Projection effects of large-scale structures on weak-lensing peak abundances
- Impact of baryonic feedback on HSC Y1 weak lensing non-Gaussian statistics
- Probing Saraswati's heart: evaluating the dynamical state of the massive galaxy cluster A2631 through a comprehensive weak-lensing and dynamical analysis
- Cosmological studies from tomographic weak lensing peak abundances and impacts of photo-z errors
- A major galaxy cluster merger caught by eROSITA: weak lensing mass distribution and kinematic description
- The Weak Lensing Peak Statistics in the Mocks by the inverse-Gaussianization Method
- Probabilistic Cosmological Mass Mapping from Weak Lensing Shear
- Stage IV baryonic feedback correction for non-Gaussianity inference
- The FLAMINGO project: cosmology with the redshift dependence of weak gravitational lensing peaks
- Neural style transfer of weak lensing mass maps
- Numerical investigation of non-Gaussianities in the phase and modulus of density Fourier modes