Finalized Version 22 (v22) of the RG-S theoretical framework, establishing a fully predictive, multi-messenger cosmological model derived from the Multiscale Entanglement Renor-malization Ansatz (MERA) on a tridimensional tetrahedral quantum grid. Erratum and Statement of Correction Regarding v21In Version 21 of this framework, a conceptual and numerical oversight was made regarding theweak lensing hysteresis forecasts in massive cluster mergers (formerly Section 8.1). I erroneouslyequated the total dynamic hysteresis offset generated by the unsuppressed Proca-vector fielddirectly with the immediate spatial offset reported in weak-lensing mass centroid maps. Thisunmitigated scaling yielded macroscopic spatial separations (∆x ∼ 826 kpc for the Musket Ballcluster) that violently conflict with contemporary observational data from the Hubble SpaceTelescope and Subaru. I take full personal and academic responsibility for this miscalculation,which stemmed from an incomplete application of the framework’s internal boundary conditions.The current Version 22 comprehensively rectifies this error. By formally separating thetotal integrated dynamic offset (∆xdyn) from the instrumental weak-lensing resolution threshold(∆xobs), and accounting for the non-linear suppression of the coupling under local Symmetronsymmetry restoration, we demonstrate that the model naturally resolves the apparent clusterscale tension without compromising its core galactic extensions Keywords Modified Gravity, General Relativity Extension, Symmetron Field, Proca Field, Fluid Geometry, Galactic Dynamics, Astrophysics, Theoretical Physics, Open Science
Juan Arroyo (Tue,) studied this question.