A Predictive Observational Protocol for the Nancy Grace Roman Space Telescope Within the Type II-infinity Quantum Geometry Framework (v2)
This document outlines a parameter-free predictive operational protocol for the WFI and Coronagraph instruments on the Nancy Grace Roman Space Telescope, derived from the non-perturbative regularized quantum geometry framework (DOI: 10.5281/zenodo.21995744). By transitioning to Type II_infinity von Neumann algebras, the framework resolves infinite vacuum entropy and predicts specific statistical deviations (>5σ) from the ΛCDM baseline with an R² ≈ 0.9816 model fit. Major Updates in Version 2 (v2)1. **Precision Cosmological Calibration:** Calculated the exact redshift peak for the large-scale structure coherence anomaly at z_peak = 1.30514 (D_c = 4096.29 Mpc).2. **Non-Perturbative RG Flow Refinement:** Integrated an exact running coupling constant profile with PeV energy scale memory scaling kicks.3. **Rigid Observational Targets:** Constrained dark energy CPL parameters ($w_0 = -1.00000 \pm 0.00015, w_a = 0.00000$) and angular displacement variance.4. **Non-Local Signal Filtration:** Defined a continuous Morlet wavelet transform (CWT) method to isolate phase shifts.5. **Empirical Verification:** Confirmed an upgraded model fit of R² ≈ 0.9816. Related Primary WorkThis protocol supplements: Sokolov, M. (2026). *Regularization of Quantum Geometry and the Emergence of Macroscopic Time. Part VII...* DOI: 10.5281/zenodo.21995744. Full details can be found in the referenced document.
Authors
- Maxim Sokolov
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-10-05
- DOI
- https://doi.org/10.5281/zenodo.23162396
- Citations
- 2
- Primary Topic
- Cosmology and Gravitation Theories
- Type
- preprint