arXiv:2609.08460·v1·Cosmology and Nongalactic Astrophysics
Finding the distribution of matter using lenses - II: deconvolution-based reconstruction with 3x2pt measurements
Jun-Qian Jiang · Ajoy Dawn · Dhiraj Kumar Hazra · Benjamin L'Huillier · Arman Shafieloo
Abstract
We present a deconvolution-based framework for testing scale-dependent departures of the late-time matter power spectrum from a fiducial cosmological model using pt measurements. We introduce a free-form scale-dependent modulation of the fiducial nonlinear matter power spectrum and construct the linear response of binned galaxy-clustering, galaxy-galaxy-lensing, and cosmic-shear spectra to the discretized modulation . The response is evaluated with full-sky, beyond-Limber kernels including density, redshift-space-distortion, gravitational-shear, and intrinsic-alignment contributions. We reconstruct using a regularized modified Richardson-Lucy algorithm, with weak diffusion in and selection of the minimum- solution along the iteration history. Using Rubin/LSST Year 10-like synthetic data, we find that oscillatory modulations with amplitudes can be recovered over , provided the oscillation frequency on . We further introduce a posterior-weighted consistency statistic calibrated with posterior-predictive null mocks, thereby accounting for cosmological and nuisance-parameter uncertainties without relying on Wilks' theorem. The null case is consistent with , while a oscillatory modulation is detected at . These results demonstrate the potential of regularized deconvolution as a model-independent consistency test of the matter power spectrum in future pt surveys.
Comments: 13+7 pages, 9 figures