Jun 8 – 12, 2026
Perimeter Institute for Theoretical Physics
America/Toronto timezone

Towards Probabilistic Cataloging with BLISS: the Bayesian Light Source Separator

Jun 11, 2026, 1:30 PM
20m
PI/4-405 - Bob Room (Perimeter Institute for Theoretical Physics)

PI/4-405 - Bob Room

Perimeter Institute for Theoretical Physics

60
Contributed Talk

Speaker

Camille Avestruz (University of Michigan–Ann Arbor - Department of Physics)

Description

Stage-IV dark energy wide-field surveys, such as the Vera C. Rubin Observatory Legacy Survey of Space and Time (LSST), will observe an unprecedented number density of galaxies. As a result, the majority of imaged galaxies will visually overlap, a phenomenon known as blending. Blending is expected to be a leading source of systematic error in astronomical measurements. We present the Bayesian Light Source Separator (BLISS), a framework for probabilistic detection, deblending, and measurement. We demonstrate the potential of this method with numerical experiments using synthetic observations where truth is known. We highlight experiments that show (i) robustness to spatially varying backgrounds and point spread functions, (ii) how propagating the probabilistic detections to per-object flux posteriors substantially improves aperture flux residuals, and (iii) how our method retains accurate and well-calibrated posterior approximations for shear estimation under increasingly complex observational systematics. BLISS is a scalable, uncertainty-aware tool for mitigating blending-induced systematics in next-generation cosmological surveys.

Authors

Aakash Patel (Yale University) Camille Avestruz (University of Michigan–Ann Arbor - Department of Physics) Gabriel Patron Herrera (University of Michigan) Ismael Mendoza (University of Maryland) Jeffrey Regier (University of Michigan) Timothy White (University of Michigan) Yicun Duan (University of Michigan)

Presentation materials

External references