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Colin Oreilly

1 paper in the library · publishing 2026

Papers

Weak Lensing Shear Correlation with the O'Reilly Effect: Testing Informational Contributions to Strong Gravitational Lens Morphology in SDSS J1206+4332

Zenodo (CERN European Organization for Nuclear Research) June 5, 2026 Colin Oreilly

A synthetic modeling test of the Relativity of Information and Geometric Principles (RIGP) framework applied to strong gravitational lensing is presented. Using the quad lens system SDSS J1206+4332, an informational perturbation term Sμν—the geometric footprint of an observer's collapsed probability field—is superimposed onto a standard singular isothermal ellipsoid plus external shear lens model. The perturbation, modeled as a dipole-modulated anisotropic Gaussian at 4% amplitude, produces characteristic structured residuals after standard model subtraction. The predicted informational footprint is spatially coherent, anisotropic, and distinguishable from instrumental noise at HST sensitivity levels. A direct observational test using archival HST ACS/WFC F814W imaging is proposed. The work connects to Verlinde's entropic gravity, the ER=EPR conjecture, Penrose-Hameroff Orchestrated Objective Reduction, and Nottale's Scale Relativity.