Statistical Field Theory for Weak Gravitational Lensing
astro-ph.CO, gr-qc
Submitted: 2026-06-17
Updated: 2026-08-29
Comments: 30 pages, 17 figures. Prepared for submission to PRD. Comments welcome. A companion paper introducing the sft-wick formalism and package can be found here: arXiv:2606.19480
License: http://creativecommons.org/licenses/by-sa/4.0/
The gist: Standard weak-lensing calculations treat lensing as a linear remapping of the matter field along the line of sight.
Terminology
Abstract
Standard weak-lensing calculations treat lensing as a linear remapping of the matter field along the line of sight. We instead formulate lensing as a stochastic field theory for the Sachs optical scalars, driven by random Ricci-focusing and Weyl-shearing fields. The resulting path integral generates a diagrammatic expansion for arbitrary n-point correlation functions of lensing observables, organised into linear response, nonlinear propagation, and driving-field cumulants. The conventional calculation emerges as the lowest-order, linear-propagation limit. Beyond it, nonlinear Sachs evolution couples to driving-field non-Gaussianity, mixing the matter cumulant hierarchy into the lensing hierarchy. A selection rule governs the couplings: an n-point observable receives a direct contribution from the n-point driving-field cumulant, and its leading hierarchy-mixing correction from the (n+1) -point cumulant via one nonlinear Sachs interaction, with higher cumulants entering only at higher order. The two-point function, for instance, is corrected by squeezed three-point cumulants of Ricci focusing and Weyl shearing, letting small-scale modes source larger scales and feeding the lensing E - and B-modes equally. Rather than a restrictive approximation scheme, the formalism is a paradigm shift: a unified framework naturally accommodating path corrections, higher-order matter statistics, stochasticity, and small-scale effects.
Sources
- Euclid Definition Study Report
- The effect of Limber and flat-sky approximations on galaxy weak lensing
- Beyond Limber: Efficient computation of angular power spectra for galaxy clustering and weak lensing
- The Limits of Cosmic Shear
- Gravitational corrections to light propagation in a perturbed FLRW-universe and corresponding weak lensing spectra
- Cosmology with Minkowski functionals and moments of the weak lensing convergence field
- Full-sky Gravitational Lensing Simulation for Large-area Galaxy Surveys and Cosmic Microwave Background Experiments
- sft-wick: A formalism and package for Feynman-diagram expansion and evaluation in stochastic field theories
- The effects of galaxy formation on the matter power spectrum: A challenge for precision cosmology
- Evidence for lensing of gravitational waves from LIGO-Virgo
- Planck 2015 results. XIII. Cosmological parameters
- Distance measures in cosmology
Related papers
- Angular clustering and bias of photometric quasars in the Kilo-Degree Survey Data Release 4
- A Novel kinetic Sunyaev-Zel'dovich Estimator for Electron-Electron Correlations
- Magnetic fields at the dawn of structure formation I. The CARLA J1510+5958 proto-cluster
- Dark Energy Survey Year 6 Results: Weak Lensing and Galaxy Clustering Cosmological Analysis Framework
- Exploring the Impact of Systematic Bias in Type Ia Supernova Cosmology Across Diverse Dark Energy Parametrizations
- Non-Gaussian Galaxy Stochasticity and the Noise-Field Formulation