Topological Core Collision as the Origin of the FRW Phase and CMB Anomalies
This work develops a topological model in which the observed FRW cosmology emerges from an asymmetric collision between two large metric cores carrying opposite topological charges (+1 for matter and −1 for antimatter). The collision induces a topological phase transition, annihilates the antimatter core, and generates a new FRW region whose geometric signatures survive in the cosmic microwave background. The model provides a unified geometric explanation for baryon asymmetry, dark matter, dark energy, and the large-scale anomalies of the CMB. The collision produces a metric defect that contributes only to low multipoles (ℓ ≤ 10), naturally explaining quadrupole suppression, quadrupole–octupole alignment, the Axis of Evil, and the Eridanus cold spot. A numerical reconstruction based on Planck data yields core masses M1 ≈ 0.82 Mtot and M2 ≈ 0.18 Mtot, radii R1 + R2 ≈ 0.25 RFRW, and collision energy ≈ 0.16 Mtot, all consistent with observed cosmological parameters. The model requires no new fields or modifications of gravity and relies solely on the topological properties of the metric. (Основано на содержании документа: “This work proposes a new topological model for the origin of the observed FRW phase…”, “The proposed model provides a unified geometric explanation…”, “The collision contributes only to low multipoles…”, “The inferred masses (M1 ~ 0.82Mtot, M2 ~ 0.18Mtot)…”)
Authors
- Krasnov Alex
Publication Details
- Journal
- Zenodo (CERN European Organization for Nuclear Research)
- Published
- 2026-09-21
- DOI
- https://doi.org/10.5281/zenodo.22881687
- Primary Topic
- Cosmology and Gravitation Theories
- Type
- preprint