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

Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-21
DOI
https://doi.org/10.5281/zenodo.22881688
Primary Topic
Cosmology and Gravitation Theories
Type
preprint
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preprint

Topological Core Collision as the Origin of the FRW Phase and CMB Anomalies

Krasnov Alex
Zenodo (CERN European Organization for Nuclear Research)
Cosmology and Gravitation Theories
preprint

Topological Core Collision as the Origin of the FRW Phase and CMB Anomalies

Krasnov Alex
preprint en

Abstract

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)…”)

Zenodo (CERN European Organization for Nuclear Research)
Cosmology and Gravitation Theories
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Topological Core Collision as the Origin of the FRW Phase and CMB Anomalies — Krasnov Alex · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS